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China best Chinese CHINAMFG Factory Price Intelligent PLC Control High Quality CE Level Professional Electric Motor Powered Direct Screw Air Compressor with ISO Certification air compressor price

Product Description

BEEST—-AIR COMPRESSOR&SOLUTION

Moair Energy Conservation Durable Two Stage Screw Air Compressor with Double Permanent Magnet Motor

1. Company background

ZheJiang CHINAMFG International Trade Co., Ltd. is the senior partner of HangZhou CHINAMFG Compressor Co., Ltd , we are committed to the sales and after-sales service of air compressors in Southeast Asia, and have stores in Indonesia.
We are the professional manufacturer of the air compressor products of various types including the permanent-magnet synchronous variable-frequency series,permanent-magnet synchronous low-pressure series,permanent-magnet sunchronous two-stage compressors series,etc.
More than 10 years of professional screw compressors manufacturing technology,bringing the international first-class permanent magnet synchronous drive and control technologies.

2. Product introduction

Equipped with an IE3 motor, the direct drive rotary screw air compressor consists of a high-accuracy screw and high-quality casting, with a wide variable range of parameters.

3.Core components

Motor 

  • More stable: no mechanical transmission troubles
    There is no gear shaft in the air compressor and the effective permanent magnet motor and the male rotor are directly connected on 1 shaft without gear drive, which can eliminate pitting of gear or hidden troubles of tooth fracture.
    Without shaft coupling, 2 integrated PM motors directly drive 2 airends of the air compressor, avoiding the hidden troubles of shaft coupling failure.
  • More energy-savings: the airend is always in a smooth running state
    The 2 stage 3 phase permanent magnet rotary gear screw air compressor of CHINAMFG is powered by 2 independent PM motors and 2 independent inverters, which is intelligently controlled such as keep the airend running at a best level-pressure point by controlling discharge pressure and interstage pressure under the circumstance of different rotary speed and different pressure. The best running speed of air compressor can be automatically calculated while running and then the compression ratio can be balanced by final match, which can keep the compressor in a best running state, thus obtaining the highest efficiency.
  • More effective: high-efficiency permanent magnet motor and no gear drive loss.
    With a motor of a high protection degree of IP54, it is more energy-saving and it can stay effective at low frequency and low speed.
  • More environment-friendly operation with lower noise
    No noise of motor bearings, gear meshing and coupling transmission.
  • More structure-compact
    The volume of PM motor is small and the structure is compact, which can save much space.

    4.Parameters

    5. Principle of energy-saving
     

    • Change the traditional induction motor with high-efficiency technology of permanent magnet rotary screw motor, thus reducing the consumption in transmission.
    • Powered by 2 independent PM motors and 2 independent inverters, the compressor is intelligently controlled such as keep the airend running at a best level-pressure point by controlling pressure of air flow and interstage pressure under the circumstance of different rotary speed and different pressure. The best running speed of compressor can be automatically calculated while running and then the compression ratio can be balanced by final match, which can keep the compressor in a best running state, thus obtaining the highest efficiency.
    • Because the gear ratio is fixed, point efficiency is emphasized in this case. That is to say, only with fixed rotary speed and rated pressure did it have the best specific power. When running in a state of variable speed and variable frequency, considering the fixed speed of gear, interstage pressure will not reach the best one. Rotational speed declining while energy consumption not declining at the same time, it is not suitable for running in variable speed and variable frequency state.

       

    /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

    After-sales Service: Online Service
    Warranty: One Year
    Lubrication Style: Lubricated
    Cooling System: Air Cooling
    Power Source: AC Power
    Cylinder Position: Vertical

    air compressor

    What is the impact of humidity on compressed air quality?

    Humidity can have a significant impact on the quality of compressed air. Compressed air systems often draw in ambient air, which contains moisture in the form of water vapor. When this air is compressed, the moisture becomes concentrated, leading to potential issues in the compressed air. Here’s an overview of the impact of humidity on compressed air quality:

    1. Corrosion:

    High humidity in compressed air can contribute to corrosion within the compressed air system. The moisture in the air can react with metal surfaces, leading to rust and corrosion in pipes, tanks, valves, and other components. Corrosion not only weakens the structural integrity of the system but also introduces contaminants into the compressed air, compromising its quality and potentially damaging downstream equipment.

    2. Contaminant Carryover:

    Humidity in compressed air can cause carryover of contaminants. Water droplets formed due to condensation can carry particulates, oil, and other impurities present in the air. These contaminants can then be transported along with the compressed air, leading to fouling of filters, clogging of pipelines, and potential damage to pneumatic tools, machinery, and processes.

    3. Decreased Efficiency of Pneumatic Systems:

    Excessive moisture in compressed air can reduce the efficiency of pneumatic systems. Water droplets can obstruct or block the flow of air, leading to decreased performance of pneumatic tools and equipment. Moisture can also cause problems in control valves, actuators, and other pneumatic devices, affecting their responsiveness and accuracy.

    4. Product Contamination:

    In industries where compressed air comes into direct contact with products or processes, high humidity can result in product contamination. Moisture in compressed air can mix with sensitive products, leading to quality issues, spoilage, or even health hazards in industries such as food and beverage, pharmaceuticals, and electronics manufacturing.

    5. Increased Maintenance Requirements:

    Humidity in compressed air can increase the maintenance requirements of a compressed air system. Moisture can accumulate in filters, separators, and other air treatment components, necessitating frequent replacement or cleaning. Excessive moisture can also lead to the growth of bacteria, fungus, and mold within the system, requiring additional cleaning and maintenance efforts.

    6. Adverse Effects on Instrumentation:

    Humidity can adversely affect instrumentation and control systems that rely on compressed air. Moisture can disrupt the accuracy and reliability of pressure sensors, flow meters, and other pneumatic instruments, leading to incorrect measurements and control signals.

    To mitigate the impact of humidity on compressed air quality, various air treatment equipment is employed, including air dryers, moisture separators, and filters. These devices help remove moisture from the compressed air, ensuring that the air supplied is dry and of high quality for the intended applications.

    air compressor

    What is the energy efficiency of modern air compressors?

    The energy efficiency of modern air compressors has significantly improved due to advancements in technology and design. Here’s an in-depth look at the energy efficiency features and factors that contribute to the efficiency of modern air compressors:

    Variable Speed Drive (VSD) Technology:

    Many modern air compressors utilize Variable Speed Drive (VSD) technology, also known as Variable Frequency Drive (VFD). This technology allows the compressor motor to adjust its speed according to the compressed air demand. By matching the motor speed to the required airflow, VSD compressors can avoid excessive energy consumption during periods of low demand, resulting in significant energy savings compared to fixed-speed compressors.

    Air Leakage Reduction:

    Air leakage is a common issue in compressed air systems and can lead to substantial energy waste. Modern air compressors often feature improved sealing and advanced control systems to minimize air leaks. By reducing air leakage, the compressor can maintain optimal pressure levels more efficiently, resulting in energy savings.

    Efficient Motor Design:

    The motor of an air compressor plays a crucial role in its energy efficiency. Modern compressors incorporate high-efficiency electric motors that meet or exceed established energy efficiency standards. These motors are designed to minimize energy losses and operate more efficiently, reducing overall power consumption.

    Optimized Control Systems:

    Advanced control systems are integrated into modern air compressors to optimize their performance and energy consumption. These control systems monitor various parameters, such as air pressure, temperature, and airflow, and adjust compressor operation accordingly. By precisely controlling the compressor’s output to match the demand, these systems ensure efficient and energy-saving operation.

    Air Storage and Distribution:

    Efficient air storage and distribution systems are essential for minimizing energy losses in compressed air systems. Modern air compressors often include properly sized and insulated air storage tanks and well-designed piping systems that reduce pressure drops and minimize heat transfer. These measures help to maintain a consistent and efficient supply of compressed air throughout the system, reducing energy waste.

    Energy Management and Monitoring:

    Some modern air compressors feature energy management and monitoring systems that provide real-time data on energy consumption and performance. These systems allow operators to identify energy inefficiencies, optimize compressor settings, and implement energy-saving practices.

    It’s important to note that the energy efficiency of an air compressor also depends on factors such as the specific model, size, and application. Manufacturers often provide energy efficiency ratings or specifications for their compressors, which can help in comparing different models and selecting the most efficient option for a particular application.

    Overall, modern air compressors incorporate various energy-saving technologies and design elements to enhance their efficiency. Investing in an energy-efficient air compressor not only reduces operational costs but also contributes to sustainability efforts by minimizing energy consumption and reducing carbon emissions.

    air compressor

    What is the role of air compressor tanks?

    Air compressor tanks, also known as receiver tanks or air receivers, play a crucial role in the operation of air compressor systems. They serve several important functions:

    1. Storage and Pressure Regulation: The primary role of an air compressor tank is to store compressed air. As the compressor pumps air into the tank, it accumulates and pressurizes the air. The tank acts as a reservoir, allowing the compressor to operate intermittently while providing a steady supply of compressed air during periods of high demand. It helps regulate and stabilize the pressure in the system, reducing pressure fluctuations and ensuring a consistent supply of air.

    2. Condensation and Moisture Separation: Compressed air contains moisture, which can condense as the air cools down inside the tank. Air compressor tanks are equipped with moisture separators or drain valves to collect and remove this condensed moisture. The tank provides a space for the moisture to settle, allowing it to be drained out periodically. This helps prevent moisture-related issues such as corrosion, contamination, and damage to downstream equipment.

    3. Heat Dissipation: During compression, air temperature increases. The air compressor tank provides a larger surface area for the compressed air to cool down and dissipate heat. This helps prevent overheating of the compressor and ensures efficient operation.

    4. Pressure Surge Mitigation: Air compressor tanks act as buffers to absorb pressure surges or pulsations that may occur during compressor operation. These surges can be caused by variations in demand, sudden changes in airflow, or the cyclic nature of reciprocating compressors. The tank absorbs these pressure fluctuations, reducing stress on the compressor and other components, and providing a more stable and consistent supply of compressed air.

    5. Energy Efficiency: Air compressor tanks contribute to energy efficiency by reducing the need for the compressor to run continuously. The compressor can fill the tank during periods of low demand and then shut off when the desired pressure is reached. This allows the compressor to operate in shorter cycles, reducing energy consumption and minimizing wear and tear on the compressor motor.

    6. Emergency Air Supply: In the event of a power outage or compressor failure, the stored compressed air in the tank can serve as an emergency air supply. This can provide temporary air for critical operations, allowing time for maintenance or repairs to be carried out without disrupting the overall workflow.

    Overall, air compressor tanks provide storage, pressure regulation, moisture separation, heat dissipation, pressure surge mitigation, energy efficiency, and emergency backup capabilities. They are vital components that enhance the performance, reliability, and longevity of air compressor systems in various industrial, commercial, and personal applications.

    China best Chinese CHINAMFG Factory Price Intelligent PLC Control High Quality CE Level Professional Electric Motor Powered Direct Screw Air Compressor with ISO Certification   air compressor priceChina best Chinese CHINAMFG Factory Price Intelligent PLC Control High Quality CE Level Professional Electric Motor Powered Direct Screw Air Compressor with ISO Certification   air compressor price
    editor by CX 2024-02-19

    China supplier Chinese CHINAMFG Factory Price Intelligent PLC Control CE Level High Quality Professional Electric Motor Powered Direct Screw Air Compressor with ISO Certification with Good quality

    Product Description

    BEEST—-AIR COMPRESSOR&SOLUTION

    Moair Energy Conservation Durable Two Stage Screw Air Compressor with Double Permanent Magnet Motor

    1. Company background

    ZheJiang CHINAMFG International Trade Co., Ltd. is the senior partner of HangZhou CHINAMFG Compressor Co., Ltd , we are committed to the sales and after-sales service of air compressors in Southeast Asia, and have stores in Indonesia.
    We are the professional manufacturer of the air compressor products of various types including the permanent-magnet synchronous variable-frequency series,permanent-magnet synchronous low-pressure series,permanent-magnet sunchronous two-stage compressors series,etc.
    More than 10 years of professional screw compressors manufacturing technology,bringing the international first-class permanent magnet synchronous drive and control technologies.

    2. Product introduction

    Equipped with an IE3 motor, the direct drive rotary screw air compressor consists of a high-accuracy screw and high-quality casting, with a wide variable range of parameters.

    3.Core components

    Motor 

    • More stable: no mechanical transmission troubles
      There is no gear shaft in the air compressor and the effective permanent magnet motor and the male rotor are directly connected on 1 shaft without gear drive, which can eliminate pitting of gear or hidden troubles of tooth fracture.
      Without shaft coupling, 2 integrated PM motors directly drive 2 airends of the air compressor, avoiding the hidden troubles of shaft coupling failure.
    • More energy-savings: the airend is always in a smooth running state
      The 2 stage 3 phase permanent magnet rotary gear screw air compressor of CHINAMFG is powered by 2 independent PM motors and 2 independent inverters, which is intelligently controlled such as keep the airend running at a best level-pressure point by controlling discharge pressure and interstage pressure under the circumstance of different rotary speed and different pressure. The best running speed of air compressor can be automatically calculated while running and then the compression ratio can be balanced by final match, which can keep the compressor in a best running state, thus obtaining the highest efficiency.
    • More effective: high-efficiency permanent magnet motor and no gear drive loss.
      With a motor of a high protection degree of IP54, it is more energy-saving and it can stay effective at low frequency and low speed.
    • More environment-friendly operation with lower noise
      No noise of motor bearings, gear meshing and coupling transmission.
    • More structure-compact
      The volume of PM motor is small and the structure is compact, which can save much space.

      4.Parameters

      5. Principle of energy-saving
       

      • Change the traditional induction motor with high-efficiency technology of permanent magnet rotary screw motor, thus reducing the consumption in transmission.
      • Powered by 2 independent PM motors and 2 independent inverters, the compressor is intelligently controlled such as keep the airend running at a best level-pressure point by controlling pressure of air flow and interstage pressure under the circumstance of different rotary speed and different pressure. The best running speed of compressor can be automatically calculated while running and then the compression ratio can be balanced by final match, which can keep the compressor in a best running state, thus obtaining the highest efficiency.
      • Because the gear ratio is fixed, point efficiency is emphasized in this case. That is to say, only with fixed rotary speed and rated pressure did it have the best specific power. When running in a state of variable speed and variable frequency, considering the fixed speed of gear, interstage pressure will not reach the best one. Rotational speed declining while energy consumption not declining at the same time, it is not suitable for running in variable speed and variable frequency state.

         

      /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      After-sales Service: Online Service
      Warranty: One Year
      Lubrication Style: Lubricated
      Cooling System: Air Cooling
      Power Source: AC Power
      Cylinder Position: Vertical

      air compressor

      Can air compressors be used for gas compression and storage?

      Yes, air compressors can be used for gas compression and storage. While air compressors are commonly used to compress and store air, they can also be utilized for compressing and storing other gases, depending on the specific application requirements. Here’s how air compressors can be used for gas compression and storage:

      Gas Compression:

      Air compressors can compress various gases by utilizing the same principles applied to compressing air. The compressor takes in the gas at a certain pressure, and through the compression process, it increases the pressure and reduces the volume of the gas. This compressed gas can then be used for different purposes, such as in industrial processes, gas pipelines, or storage systems.

      Gas Storage:

      Air compressors can also be used for gas storage by compressing the gas into storage vessels or tanks. The compressed gas is stored at high pressure within these vessels until it is needed for use. Gas storage is commonly employed in industries where a continuous and reliable supply of gas is required, such as in natural gas storage facilities or for storing compressed natural gas (CNG) used as a fuel for vehicles.

      Gas Types:

      While air compressors are primarily designed for compressing air, they can be adapted to handle various gases, including but not limited to:

      • Nitrogen
      • Oxygen
      • Hydrogen
      • Carbon dioxide
      • Natural gas
      • Refrigerant gases

      It’s important to note that when using air compressors for gas compression and storage, certain considerations must be taken into account. These include compatibility of the compressor materials with the specific gas being compressed, ensuring proper sealing to prevent gas leaks, and adhering to safety regulations and guidelines for handling and storing compressed gases.

      By leveraging the capabilities of air compressors, it is possible to compress and store gases efficiently, providing a reliable supply for various industrial, commercial, and residential applications.

      air compressor

      How do you maintain proper air quality in compressed air systems?

      Maintaining proper air quality in compressed air systems is essential to ensure the reliability and performance of pneumatic equipment and the safety of downstream processes. Here are some key steps to maintain air quality:

      1. Air Filtration:

      Install appropriate air filters in the compressed air system to remove contaminants such as dust, dirt, oil, and water. Filters are typically placed at various points in the system, including the compressor intake, aftercoolers, and before point-of-use applications. Regularly inspect and replace filters to ensure their effectiveness.

      2. Moisture Control:

      Excessive moisture in compressed air can cause corrosion, equipment malfunction, and compromised product quality. Use moisture separators or dryers to remove moisture from the compressed air. Refrigerated dryers, desiccant dryers, or membrane dryers are commonly employed to achieve the desired level of dryness.

      3. Oil Removal:

      If the compressed air system utilizes oil-lubricated compressors, it is essential to incorporate proper oil removal mechanisms. This can include coalescing filters or adsorption filters to remove oil aerosols and vapors from the air. Oil-free compressors eliminate the need for oil removal.

      4. Regular Maintenance:

      Perform routine maintenance on the compressed air system, including inspections, cleaning, and servicing of equipment. This helps identify and address any potential issues that may affect air quality, such as leaks, clogged filters, or malfunctioning dryers.

      5. Air Receiver Tank Maintenance:

      Regularly drain and clean the air receiver tank to remove accumulated contaminants, including water and debris. Proper maintenance of the tank helps prevent contamination from being introduced into the compressed air system.

      6. Air Quality Testing:

      Periodically test the quality of the compressed air using appropriate instruments and methods. This can include measuring particle concentration, oil content, dew point, and microbial contamination. Air quality testing provides valuable information about the effectiveness of the filtration and drying processes and helps ensure compliance with industry standards.

      7. Education and Training:

      Educate personnel working with compressed air systems about the importance of air quality and the proper procedures for maintaining it. Provide training on the use and maintenance of filtration and drying equipment, as well as awareness of potential contaminants and their impact on downstream processes.

      8. Documentation and Record-Keeping:

      Maintain accurate records of maintenance activities, including filter replacements, drying system performance, and air quality test results. Documentation helps track the system’s performance over time and provides a reference for troubleshooting or compliance purposes.

      By implementing these practices, compressed air systems can maintain proper air quality, minimize equipment damage, and ensure the integrity of processes that rely on compressed air.

      air compressor

      What are the key components of an air compressor system?

      An air compressor system consists of several key components that work together to generate and deliver compressed air. Here are the essential components:

      1. Compressor Pump: The compressor pump is the heart of the air compressor system. It draws in ambient air and compresses it to a higher pressure. The pump can be reciprocating (piston-driven) or rotary (screw, vane, or scroll-driven) based on the compressor type.

      2. Electric Motor or Engine: The electric motor or engine is responsible for driving the compressor pump. It provides the power necessary to operate the pump and compress the air. The motor or engine’s size and power rating depend on the compressor’s capacity and intended application.

      3. Air Intake: The air intake is the opening or inlet through which ambient air enters the compressor system. It is equipped with filters to remove dust, debris, and contaminants from the incoming air, ensuring clean air supply and protecting the compressor components.

      4. Compression Chamber: The compression chamber is where the actual compression of air takes place. In reciprocating compressors, it consists of cylinders, pistons, valves, and connecting rods. In rotary compressors, it comprises intermeshing screws, vanes, or scrolls that compress the air as they rotate.

      5. Receiver Tank: The receiver tank, also known as an air tank, is a storage vessel that holds the compressed air. It acts as a buffer, allowing for a steady supply of compressed air during peak demand periods and reducing pressure fluctuations. The tank also helps separate moisture from the compressed air, allowing it to condense and be drained out.

      6. Pressure Relief Valve: The pressure relief valve is a safety device that protects the compressor system from over-pressurization. It automatically releases excess pressure if it exceeds a predetermined limit, preventing damage to the system and ensuring safe operation.

      7. Pressure Switch: The pressure switch is an electrical component that controls the operation of the compressor motor. It monitors the pressure in the system and automatically starts or stops the motor based on pre-set pressure levels. This helps maintain the desired pressure range in the receiver tank.

      8. Regulator: The regulator is a device used to control and adjust the output pressure of the compressed air. It allows users to set the desired pressure level for specific applications, ensuring a consistent and safe supply of compressed air.

      9. Air Outlet and Distribution System: The air outlet is the point where the compressed air is delivered from the compressor system. It is connected to a distribution system comprising pipes, hoses, fittings, and valves that carry the compressed air to the desired application points or tools.

      10. Filters, Dryers, and Lubricators: Depending on the application and air quality requirements, additional components such as filters, dryers, and lubricators may be included in the system. Filters remove contaminants, dryers remove moisture from the compressed air, and lubricators provide lubrication to pneumatic tools and equipment.

      These are the key components of an air compressor system. Each component plays a crucial role in the generation, storage, and delivery of compressed air for various industrial, commercial, and personal applications.

      China supplier Chinese CHINAMFG Factory Price Intelligent PLC Control CE Level High Quality Professional Electric Motor Powered Direct Screw Air Compressor with ISO Certification   with Good qualityChina supplier Chinese CHINAMFG Factory Price Intelligent PLC Control CE Level High Quality Professional Electric Motor Powered Direct Screw Air Compressor with ISO Certification   with Good quality
      editor by CX 2024-02-18

      China Professional Top Quality Pneumatic Oil Free Mute Power Machine Dental Use Portable Equipment Silent Oilless Air Compressor with CE Approved arb air compressor

      Product Description


      1.Feature:

      Horizontal tank with low center of gravity. Iduction motor with low rotate speed, longer life, mute and oil-less.

      Metal guard for protecting the belt and wheels.

      2.Specification:

      Model Volt        Hz Power      W Speed RPM Capacity (L/min) Pressure Bar/Psi Noise Db/A Volume     L Weight    kg Size                             cm
      SY800×2/50L 220/50 800×2 1440 140 8/116 69 50 32.5 65×35×72

      3.Compressed Air Solutions:
      All the professionalism you need to have your correct supply of AIR(Air Volume, Air Pressure and Air Quality)
      • When it comes to air (you need it, we have it).
      • Piston compressors Cast Iron, Aluminum.
      • Screw compressors, and all compressor accessories.
      • Motors, Air Pumps, Regulators, Filters, Dryers, after coolers and so on.
      • Our Heavy Duty Air Compressors with a sense of(Quality saves your cost)
      • Unique Design and Engineering, special Machining Standards.
      • Skilled labor for assembly line, backed up with technical support worldwide.

      4.About us:

      Founded in 2571, ZheJiang CHINAMFG HangZhoui Technology Co., Ltd. is a subsidiary of CHINAMFG Electrical Stock Company,The company mainly produces air compressors,air blower,baking burner for tobacco and equipment. The company’s sales and operation headquarters is located in ZheJiang , the main production base is located in the eastern new area of HangZhou City, ZHangZhoug Province, covering an area of nearly 100 mu, with nearly 90,000 square production workshop, at the same time in ZheJiang HangZhou District CHINAMFG production base. Adhering to the corporate culture of CHINAMFG COMPANY “quality creation Sayi, credibility and integrity based on the world “, the company actively develops, forge ahead, and is committed to building the company into an international company with core competitiveness and leading the innovation and development of the industry.

      5.Why you choose us:

      6.FAQ:
      Q1: Are you the manufacturer or trading company?
      A1: We are the manufacturer.

      Q2: Where is your factory?
      A2: It is located in HangZhou City, ZHangZhoug Province, China.

      Q3: What’s the terms of trade?
      A3: FOB,CFR,CIF or EXW are all acceptable.

      Q4: What’s the terms of payment?
      A4: T/T,L/C at sight or cash.

      Q5: How long is your delivery time?
      A5: Generally it is 5-10 days if the goods are in stock or it is 20-30 days if the goods are not in stock, it is according to  quantity.

      Q6: What is the advantage about your company?
      A6: Our company has professional team and professional production line.

      Q7: If we travel to China to checking your facility, are you welcome?
      A7: Of course, why not?  We will provide the whole accompany from you landing in China.  Only Give us a call before your arrive.  We will pick up you from the airport, living in our company’s hotel, and driving by car take you visiting our company.  Warm Welcome!

      Q8: How Many Years of your company working in this industry?
      A8: We have 20-year experience in this field.

      7. Contact us:

      ZheJiang CHINAMFG HangZhouI TECHNOLOGY CO., LTD.
      Address:Company Address: O Block,10th Floor,768 Xietu Road, Xihu (West Lake) Dis. District, ZheJiang
      Address:ZHangZhoug Factory Address :23rd Street, New Eastern District, HangZhou City, ZHangZhoug Province
      Address:ZheJiang Factory Address :1515 Xihu (West Lake) Dis. Road, Luojing Town, HangZhou District, ZheJiang

       

        /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      After-sales Service: New Replacement
      Warranty: 1year
      Lubrication Style: Lubricated
      Cooling System: Air Cooling
      Cylinder Arrangement: Parallel Arrangement
      Cylinder Position: Horizontal
      Customization:
      Available

      |

      air compressor

      Are There Specific Water Treatment Requirements for Water-Lubricated Compressors?

      Water-lubricated compressors often have specific water treatment requirements to ensure optimal performance, prevent equipment damage, and maintain the desired water quality. Here’s a detailed explanation of the water treatment considerations for water-lubricated compressors:

      Water Quality:

      • Purity: The water used for lubrication should be clean and free from impurities, contaminants, or excessive minerals. Impurities in the water can lead to corrosion, blockages, and reduced lubrication effectiveness. Water sources should be evaluated to ensure they meet the required purity standards.
      • Chemical Composition: The chemical composition of the water should be within acceptable limits to avoid any adverse reactions with compressor components or lubricants. Certain water characteristics, such as pH, alkalinity, hardness, and conductivity, need to be monitored and controlled to prevent issues like scaling, fouling, or chemical reactions.

      Water Treatment Methods:

      • Filtration: Filtration systems are commonly used to remove particulate matter, sediment, or debris from the water. Filters can range from simple strainers to more advanced filtration systems, depending on the specific water quality requirements and the level of filtration needed.
      • Water Softening: If the water has high levels of hardness minerals, such as calcium and magnesium, water softening methods may be necessary. Water softeners use ion exchange or other processes to remove the hardness minerals, which can help prevent scaling and reduce the risk of deposits in the compressor system.
      • Reverse Osmosis (RO): Reverse osmosis is a water treatment method that uses a semi-permeable membrane to remove dissolved solids, ions, and impurities from the water. RO systems can effectively reduce the total dissolved solids (TDS) and improve the overall water quality, making it suitable for water-lubricated compressors.
      • Chemical Treatment: In some cases, chemical treatments may be required to control water chemistry parameters, such as pH or alkalinity. Chemical additives can be used to adjust or stabilize water chemistry within the desired range, preventing corrosion, scaling, or other issues.

      Water treatment requirements for water-lubricated compressors can vary depending on factors such as the compressor design, operating conditions, water source quality, and specific application requirements. It is essential to consult the compressor manufacturer’s recommendations and guidelines regarding water treatment. The manufacturer’s guidelines will provide specific information on water quality limits, treatment methods, and any required maintenance procedures related to water treatment.

      Regular monitoring of water quality, including periodic testing and analysis, is recommended to ensure that the water treatment measures are effective and the desired water quality is maintained. Water treatment systems should be properly maintained and periodically serviced to ensure their optimal performance and prevent any potential issues that could affect the operation and longevity of water-lubricated compressors.

      air compressor

      What Are the Considerations for Choosing Water-Lubricated vs. Oil-Lubricated Compressors?

      When selecting between water-lubricated and oil-lubricated compressors, several considerations come into play. Here’s a detailed explanation of the key factors to consider when choosing between these two types:

      Operating Environment:

      • Water Sensitivity: Water-lubricated compressors are well-suited for environments where water is readily available and can be easily supplied to the compressor system. On the other hand, oil-lubricated compressors are more suitable for applications where water is not readily available or where water contamination could pose a problem.
      • Cleanliness Requirements: If the application demands a high level of cleanliness, such as in certain manufacturing processes or cleanroom environments, water-lubricated compressors may be preferred. Water is inherently cleaner than oil and reduces the risk of oil contamination in sensitive operations.

      Maintenance and Service:

      • Lubricant Replacement: Oil-lubricated compressors require regular oil changes and maintenance to ensure proper lubrication and performance. Water-lubricated compressors, on the other hand, eliminate the need for oil changes and associated maintenance tasks, simplifying the maintenance requirements.
      • Oil Contamination: Oil-lubricated compressors carry the risk of oil contamination in the compressed air system. This can be a concern in certain applications where oil contamination can negatively impact product quality or downstream equipment. Water-lubricated compressors reduce the risk of oil contamination, making them advantageous in such applications.

      Environmental Impact:

      • Oil Disposal: Oil-lubricated compressors generate used oil that requires proper disposal in accordance with environmental regulations. Water-lubricated compressors eliminate the need for oil disposal, contributing to a reduced environmental impact.
      • Energy Efficiency: In terms of energy efficiency, water-lubricated compressors tend to have an advantage. Water has a higher specific heat capacity than oil, meaning it can absorb and dissipate heat more effectively. This can result in improved cooling efficiency and potentially lower energy consumption compared to oil-lubricated compressors.

      Application-Specific Factors:

      • Operating Pressure: Water-lubricated compressors are generally suitable for lower to moderate operating pressures. Oil-lubricated compressors, on the other hand, can handle higher operating pressures, making them more appropriate for applications that require higher pressure levels.
      • Temperature Sensitivity: Water-lubricated compressors may have limitations in applications where low temperatures are encountered. Water freezing or becoming slushy can cause operational issues. Oil-lubricated compressors, with appropriate low-temperature oil formulations, can better handle such temperature-sensitive conditions.

      Cost Considerations:

      • Initial Cost: Water-lubricated compressors generally have a lower initial cost compared to oil-lubricated compressors. This cost advantage can be attractive for applications with budget constraints.
      • Maintenance Cost: Over the long term, water-lubricated compressors may have lower maintenance costs due to the elimination of oil changes and associated maintenance tasks. However, it’s important to consider the specific maintenance requirements and costs associated with each type of compressor.

      By considering these factors, including the operating environment, maintenance and service requirements, environmental impact, application-specific factors, and cost considerations, one can make an informed decision when choosing between water-lubricated and oil-lubricated compressors.

      air compressor

      Can Water-Lubricated Air Compressors Be Used in Medical Applications?

      Water-lubricated air compressors can be used in certain medical applications, offering specific advantages for these environments. Here are some considerations regarding the use of water-lubricated air compressors in medical settings:

      1. Clean and sterile lubrication: Water is a clean and sterile lubricant, making it suitable for medical applications where maintaining a sterile environment is crucial. Water lubrication helps prevent contamination and ensures the integrity of medical products and procedures.
      2. Reduced risk of oil contamination: Oil-lubricated compressors pose a risk of oil carryover and oil vapor entering the compressed air system. This can be problematic in medical applications, where oil contamination could impact patient safety or interfere with sensitive medical equipment. Water-lubricated compressors eliminate this risk, providing a reliable and oil-free compressed air source.
      3. Compatibility with medical gases: Water-lubricated air compressors are compatible with medical gases such as oxygen or nitrous oxide. Unlike oil lubricants, water does not react or contaminate these gases, ensuring their purity and safety in medical procedures.
      4. Hygienic and easy to clean: Water lubrication simplifies cleaning procedures in medical environments. It does not leave behind sticky residues or require harsh chemicals for cleaning. Water-lubricated compressors can be easily cleaned and maintained, promoting a hygienic and safe medical facility.
      5. Reduced risk of fire hazards: Water has a higher flash point compared to oil lubricants, making water-lubricated compressors safer in terms of fire hazards. In medical settings, where fire safety is critical, using water as a lubricant can provide added peace of mind.
      6. Environmental friendliness: Water is a non-toxic and environmentally friendly lubricant choice. It does not contribute to air or water pollution, aligning with the sustainability goals of medical facilities.

      While water-lubricated air compressors offer several advantages for medical applications, it’s important to note that specific requirements and regulations may vary depending on the type of medical procedure or equipment involved. It is advisable to consult with medical professionals or equipment manufacturers to ensure the suitability and compliance of water-lubricated air compressors for specific medical applications.

      China Professional Top Quality Pneumatic Oil Free Mute Power Machine Dental Use Portable Equipment Silent Oilless Air Compressor with CE Approved   arb air compressorChina Professional Top Quality Pneumatic Oil Free Mute Power Machine Dental Use Portable Equipment Silent Oilless Air Compressor with CE Approved   arb air compressor
      editor by CX 2024-02-18

      China wholesaler Shengang Style Belt-Type Air Compressor with high quality

      Product Description

                                                                                                                  Belt Type Air Compressor
      Model  SG-B2065-90L
      Electric Motor  2200W/3HP
      Voltage  380V
      Frequency  50Hz
      Tank Size  350*850*2.75MM
      Pressure  8BAR
      Capacity  90L
      Speed  2850RPM
      Cylinder x Qty.  Ø65mm*2pcs

      Company Info.

      Company Profile

        Business Type: Manufacturer/Factory & Trading Company
        Main Products: Direct Driven Air Compressor , Oil Free Series Compressor , Belt Driven Air Compressor , 
       
        Number of Employees: 100
        Year of Establishment: 2008-03-16
        Management System Certification: ISO9001:2015
        OEM/ODM Availability: Yes

      Shengang, an expert in high-end machinery and equipment manufacturing, is located in HangZhou, ZHangZhoug. It is a large-scale manufacturing enterprise with a modern factory building of 50,000 square meters, a product research and development center and an international management system.

      We focus on the R&D and manufacturing of various types of motors, air compressors and cleaning equipment. After more than 30 years of brand accumulation, Kamioka products have won a number of utility model patents and invention patents. The products sell well all over the world and are well received by the majority of supporting manufacturers. trust and support.

      The company adheres to the purpose of “pursuing perfect quality and meeting customer needs”. The best products, the strictest quality control, the most reasonable prices and the most honest services are Kamiokande’s commitment to you. We sincerely welcome all Chinese and foreign partners to cooperate and work together for a CHINAMFG situation and move towards a better future!

      Main Feature:
      1. Standard stroke cylinder pump head, smooth operation and high production efficiency.
      2. Thickened aluminum cast piston connecting rod, high strength, wear resistance, high temperature resistance and other characteristics.
      3. Full copper wire motor, higher working efficiency, reliable operation and CHINAMFG structure.
      4. Thickened hot-rolled steel plate gas storage tank, high strength and high pressure resistance thickness.
      5. Accurate original pressure gauge, standard CHINAMFG display is accurate, safe and stable work.
      6. Suction and exhaust valve, special valve cylinder, not afraid of high temperature.
      7. Brand bearings, high quality bearings have long service life.
      8. Thickened belt, the belt is tough and can mitigate impact, runs smoothly and has low operating noise.
      9. Magnetic protector: Provide protective measures when the motor encounters overcurrent, overload, phase loss, short circuit, leakage, and imbalance.
      10. Large capacity fuel tank design, low fuel consumption operation.

      Certificates:

      1.We have already got CE certificates for air compressor.       

      2.ISO9001 certificate for the factory.

      We have invention patents for air compressors and high pressure washers.

      We have air compressor energy efficiency labels.
      Packing:

      Outer packing is honey-comb carton with belts,inner packing is a transparent bag.We could accept customers special request,such as:print brand,specification,good’s picture.

      Frequency Asked Question:

      1.Are you the manufacturer or trading company?
      We are the manufacturer.

      2.Where is your factory?
      It is located in HangZhou City,ZHangZhoug Province,China.

      3.What’s the terms of trade?
      FOB,CFR,CIF or EXW are all acceptable.

      4.What’s the terms of payment?
      T/T,L/C at sight or cash.

      5.What’s the lead time?
      About 30 days after receiving the deposit on our bank account.

      6.Do you accept sample order?
      Yes,we accept.

      7.What about the cost of sample?
       You have to pay the freight charge.But the cost of product could be refundable,if you will purchase 1×40’HQ container in the future.

        /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      After-sales Service: 1 Year
      Warranty: 1 Year
      Lubrication Style: Lubricated
      Cooling System: Air Cooling
      Cylinder Arrangement: Duplex Arrangement
      Cylinder Position: Horizontal
      Samples:
      US$ 158/Piece
      1 Piece(Min.Order)

      |
      Request Sample

      Customization:
      Available

      |

      air compressor

      What are the advantages of using rotary vane compressors?

      Rotary vane compressors offer several advantages that make them a popular choice for various applications. These compressors are widely used in industries where a reliable and efficient source of compressed air is required. Here are the advantages of using rotary vane compressors:

      1. Compact and Lightweight:

      Rotary vane compressors are typically compact and lightweight compared to other types of compressors. Their compact design makes them suitable for installations where space is limited, such as in small workshops or mobile applications. The lightweight nature of these compressors allows for easy transportation and maneuverability.

      2. High Efficiency:

      Rotary vane compressors are known for their high efficiency. The design of the vanes and the compression chamber allows for smooth and continuous compression, resulting in minimal energy losses. This efficiency translates into lower energy consumption and reduced operating costs over time.

      3. Quiet Operation:

      Rotary vane compressors operate with relatively low noise levels. The design of the compressor, including the use of vibration damping materials and sound insulation, helps to minimize noise and vibrations during operation. This makes rotary vane compressors suitable for applications where noise reduction is important, such as in indoor environments or noise-sensitive areas.

      4. Oil Lubrication:

      Many rotary vane compressors utilize oil lubrication, which provides several benefits. The oil lubrication helps to reduce wear and friction between the moving parts, resulting in extended compressor life and improved reliability. It also contributes to better sealing and improved efficiency by minimizing internal leakage.

      5. Versatile Applications:

      Rotary vane compressors are versatile and can be used in a wide range of applications. They are suitable for both industrial and commercial applications, including automotive workshops, small manufacturing facilities, dental offices, laboratories, and more. They can handle various compressed air requirements, from light-duty tasks to more demanding applications.

      6. Easy Maintenance:

      Maintenance of rotary vane compressors is relatively straightforward. Routine maintenance tasks typically include oil changes, filter replacements, and periodic inspection of vanes and seals. The simplicity of the design and the availability of replacement parts make maintenance and repairs easier and more cost-effective.

      These advantages make rotary vane compressors an attractive choice for many applications, providing reliable and efficient compressed air solutions.

      air compressor

      Can air compressors be used for inflating tires and sporting equipment?

      Yes, air compressors can be used for inflating tires and sporting equipment, providing a convenient and efficient method for achieving the desired air pressure. Here’s how air compressors are used for these purposes:

      1. Tire Inflation:

      Air compressors are commonly used for inflating vehicle tires, including car tires, motorcycle tires, bicycle tires, and even larger truck or trailer tires. Air compressors provide a continuous source of pressurized air, allowing for quick and accurate inflation. They are often used in automotive repair shops, gas stations, and by individuals who regularly need to inflate tires.

      2. Sporting Equipment Inflation:

      Air compressors are also useful for inflating various types of sporting equipment. This includes inflatable balls such as soccer balls, basketballs, footballs, and volleyballs. Additionally, air compressors can be used to inflate inflatable water toys, air mattresses, inflatable kayaks, and other recreational items that require air for proper inflation.

      3. Air Tools for Inflation:

      Air compressors can power air tools specifically designed for inflation purposes. These tools, known as inflators or air blow guns, provide controlled airflow for inflating tires and sporting equipment. They often have built-in pressure gauges and nozzles designed to fit different types of valves, making them versatile and suitable for various inflation tasks.

      4. Adjustable Pressure:

      One advantage of using air compressors for inflation is the ability to adjust the pressure. Most air compressors allow users to set the desired pressure level using a pressure regulator or control knob. This feature ensures that tires and sporting equipment are inflated to the recommended pressure, promoting optimal performance and safety.

      5. Efficiency and Speed:

      Air compressors provide a faster and more efficient inflation method compared to manual pumps. The continuous supply of compressed air allows for quick inflation, reducing the time and effort required to inflate tires and sporting equipment manually.

      6. Portable Air Compressors:

      For inflating tires and sporting equipment on the go, portable air compressors are available. These compact and lightweight compressors can be easily carried in vehicles or taken to sports events and outdoor activities, ensuring convenient access to a reliable air supply.

      It is important to note that when using air compressors for inflating tires, it is recommended to follow manufacturer guidelines and proper inflation techniques to ensure safety and avoid overinflation.

      air compressor

      What maintenance is required for air compressors?

      Maintaining air compressors is essential to ensure their optimal performance, longevity, and safe operation. Regular maintenance helps prevent breakdowns, improves efficiency, and reduces the risk of accidents. Here are some key maintenance tasks for air compressors:

      1. Regular Inspection: Perform visual inspections of the air compressor to identify any signs of wear, damage, or leaks. Inspect the compressor, hoses, fittings, and connections for any abnormalities. Pay attention to oil leaks, loose bolts, and worn-out components.

      2. Oil Changes: If your air compressor has an oil lubrication system, regular oil changes are crucial. Follow the manufacturer’s recommendations for the frequency of oil changes and use the recommended oil type. Dirty or degraded oil can impact compressor performance and lead to premature wear.

      3. Air Filter Cleaning or Replacement: Clean or replace the air filter regularly to ensure proper air intake and prevent contaminants from entering the compressor. Clogged or dirty filters can restrict airflow and reduce efficiency.

      4. Drain Moisture: Air compressors produce moisture as a byproduct of the compression process. Accumulated moisture in the tank can lead to rust and corrosion. Drain the moisture regularly from the tank to prevent damage. Some compressors have automatic drains, while others require manual draining.

      5. Belt Inspection and Adjustment: If your compressor has a belt-driven system, inspect the belts for signs of wear, cracks, or tension issues. Adjust or replace the belts as necessary to maintain proper tension and power transmission.

      6. Tank Inspection: Inspect the compressor tank for any signs of corrosion, dents, or structural issues. A damaged tank can be hazardous and should be repaired or replaced promptly.

      7. Valve Maintenance: Check the safety valves, pressure relief valves, and other valves regularly to ensure they are functioning correctly. Test the valves periodically to verify their proper operation.

      8. Motor and Electrical Components: Inspect the motor and electrical components for any signs of damage or overheating. Check electrical connections for tightness and ensure proper grounding.

      9. Keep the Area Clean: Maintain a clean and debris-free area around the compressor. Remove any dirt, dust, or obstructions that can hinder the compressor’s performance or cause overheating.

      10. Follow Manufacturer’s Guidelines: Always refer to the manufacturer’s manual for specific maintenance instructions and recommended service intervals for your air compressor model. They provide valuable information on maintenance tasks, lubrication requirements, and safety precautions.

      Regular maintenance is vital to keep your air compressor in optimal condition and extend its lifespan. It’s also important to note that maintenance requirements may vary depending on the type, size, and usage of the compressor. By following a comprehensive maintenance routine, you can ensure the reliable operation of your air compressor and maximize its efficiency and longevity.

      China wholesaler Shengang Style Belt-Type Air Compressor   with high qualityChina wholesaler Shengang Style Belt-Type Air Compressor   with high quality
      editor by CX 2024-02-17

      China Good quality Danfos Scroll Parts Air Cooler Refrigeration Compressor Danfos 50Hz R407c Single Hrp060t4 in Stock with high quality

      Product Description

       

       

      Hermetic piston compressor, MT/Z medium and high temperature compressor specifications
      Rated Performance R22,R407C-50HZ
      Model Rated Performance* MT-R22 Rated Performance** MTZ-R407C
      Capacity(W)  Input Power (KW)  Input current(A)  COP  (W/W) Capacity(W)  Input Power (KW)  Input current(A)  COP  (W/W)
      MT/MTZ 18 JA 3881 1.45 2.73 2.68 3726 1.39 2.47 2.68
      MT/MTZ 22 JC 5363 1.89 3.31 2.84 4777 1.81 3.31 2.64
      MT/MTZ 28 JE 7378 2.55 4.56 2.89 6137 2.35 4.39 2.61
      MT/MTZ 32 JF 8064 2.98 4.97 2.70 6941 2.67 5.03 2.60
      MT/MTZ 36 JG 9272 3.37 5.77 27.5 7994 3.12 5.71 2.56
      MT/MTZ 40 JH 1571 3.85 6.47 2.72 9128 3.61 6.45 2.53
      MT/MTZ 44 HJ 11037 3.89 7.37 2.84 9867 3.63 6.49 2.72
      MT/MTZ 50 HK 12324 4.32 8.46 2.85 11266 4.11 7.34 2.74
      MT/MTZ 56 HL 13771 5.04 10.27 2.73 12944 4.69 8.36 2.76
      MT/MTZ 64 HM 15820 5.66 9.54 2.79 14587 5.25 9.35 2.78
      MT/MTZ 72 HN 17124 6.31 10.54 2.71 16380 5.97 10.48 2.74
      MT/MTZ 80 HP 19534 7.13 11.58 2.74 18525 6.83 11.83 2.71
      MT/MTZ 100 HS 23403 7.98 14.59 2.93 22111 7.85 13.58 2.82
      MT/MTZ 125 HU 3571 10.66 17.37 2.85 29212 10.15 16.00 2.88
      MT/MTZ 144 HV 34340 11.95 22.75 2.87 32934 11.57 18.46 2.85
      MT/MTZ 160 HW 38273 13.39 22.16 2.86 37386 13.28 21.40 2.82
      MTM/MTZ200 HSS 46807 15.97 29.19 2.93 43780 15.54 26.90 2.82
      MTM/MTZ250HUU 6 0571 21.33 34.75 2.85 57839 20.09 31.69 2.88
      MTM/MTZ288 HVV 68379 23.91 45.50 2.87 65225 22.92 36.56 2.85
      MTM/MTZ 320 HWW 76547 26.79 44.32 2.86 74571 26.30 42.37 2.81

       

      Rated Performance*High Efficiency CompressorR22-50HZ
      Model Capacity/(W) Input Power (KW) Inputcuprret/(A) COP(W/W)
      MT 45 HJ 10786 3.62 6.86 2.98
      MT 51 HK 12300 4.01 7.86 3.07
      MT 57 HL 13711 4.54 9.24 3.02
      MT 65 HM 15763 5.23 8.81 3.01
      MT 73 HN 17863 5.98 9.99 2.99
      MT 81 HP 25718 6.94 11.27 2.93

      R134a,R404A,R507-50Hz
       Model Rated Performance* R134A Rated Performance**R404A,R507-50HZ
      Capacity(W)  Input Power (KW)  Input current(A)  COP  (W/W) Capacity(W)  Input Power (KW)  Input current(A)  COP  (W/W)
      MT/MTZ 18 JA 2553 0.99 2.19 2.58 1865 1.2 2.47 1.56
      MT/MTZ22 JC 3352 1.20 2.51 2.80 2673 1.56 2.96 1.71
      MT/MTZ 28 JE 4215 1.53 3.30 2.75 3343 1.95 3.80 1.72
      MT/MTZ 32 JF 4951 1.87 3.94 2.65 3747 2.28 4.51 1.64
      MT/MTZ 36 JG 6005 2.13 4.09 2.81 4371 2.66 4.91 1.64
      MT/MTZ 40 JH 6398 2.33 4.89 2.74 4889 3.00 5.36 1.63
      MT/MTZ 44 HJ 6867 2.52 5.65 2.72 5152 3.16 6.37 1.63
      MT/MTZ 50 HK 8071 2.88 5.50 2.80 6152 3.61 6.53 1.70
      MT/MTZ 56 HL 9069 3.21 5.83 2.82 7001 4.00 7.07 1.75
      MT/MTZ 64 HM 1571 3.62 6.96 2.86 8132 4.54 8.30 1.79
      MT/MTZ 72 HP 11853 4.01 7.20 2.96 9153 4.99 8.64 1.84
      MT/MTZ 80 HP 13578 4.63 8.45 2.93 10524 5.84 10.12 1.80
      MT/MTZ 100 HS 15529 5.28 10.24 2.94 12571 6.83 12.16 1.76
      MT/MTZ 125 HU 19067 6.29 10.80 3.03 15714 8.53 13.85 1.84
      MT/MTZ 144 HV 23620 7.83 13.78 3.02 18076 9.74 16.25 1.86
      MT/MTZ 160 HW 25856 8.57 14.67 3.02 25713 11.00 17.94 1.84
      MTM/MTZ200 HSS 3571 10.45 20.28 2.94 23800 13.53 24.06 1.76
      MTM/MTZ 250 HUU 37746 12.45 21.38 3.03 31121 16.88 27.43 1.84
      MTM/MTZ288 HVV 46773 15.49 27.29 3.02 35779 19.28 32.18 1.86
      MTM/MTZ 320 HWW 51169 16.98 29.06 3.01 40093 21.76 35.51 1.84

       

      50HZ DATA  
      Model  50Hz Nominal Cooling Capacity/Capacity Input Power COP E.E.R. c Displacement Displacement Injection flow d Net.W
      TR W Btu/h KW W/W Btu/h/W cm³/rev m3/h dm3 kg
      R22 Single Sm084 7 20400 69600 6.12 3.33 11.4 114.5 19.92 3.3 64
      SM090 7.5 21800 74400 6.54 3.33 11.4 120.5 20.97 3.3 65
      SM100 8 23100 79000 6.96 3.33 11.3 127.2 22.13 3.3 65
      SM110 9 25900 88600 7.82 3.32 11.3 144.2 25.09 3.3 73
      SM112 9.5 27600 94400 7.92 3.49 11.9 151.5 26.36 3.3 64
      SM115 9.5 28000 95600 8.31 3.37 11.5 155.0 26.97 3.8 78
      SM120 10 35710 157100 8.96 3.36 11.5 166.6 28.99 3.3 73
      SM124 10 31200 106300 8.75 3.56 12.2 169.5 29.5 3.3 64
      SM125 10 35710 157100 8.93 3.37 11.5 166.6 28.99 3.8 78
      SM147 12 36000 123000 10.08 3.58 12.2 193.5 33.7 3.3 67
      SM148 12 36100 123100 10.80 3.34 11.4 199.0 34.60 3.6 88
      SM160 13 39100 133500 11.60 3.37 11.5 216.6 37.69 4.0 90
      SM161 13 39000 133200 11.59 3.37 11.5 216.6 37.69 3.6 88
      SM175 14 42000 143400 12.46 3.37 11.5 233.0 40.54 6.2 100
      SM/SY185 15 45500 155300 13.62 3.34 11.4 249.9 43.48 6.2 100
      SY240 20 61200 2 0571 0 18.20 3.36 11.5 347.8 60.50 8.0 150
      SY300 25 78200 267000 22.83 3.43 11.7 437.5 76.10 8.0 157
      SY380 30 94500 322700 27.4 3.46 11.8 531.2 92.40 8.4 158
      R107C Single SZ084 7 19300 66000 6.13 3.15 10.7 114.5 19.92 3.3 64
      SZ090 7.5 20400 69600 6.45 3.16 10.8 120.5 20.97 3.3 65
      SZ100 8 21600 73700 6.84 3.15 10.8 127.2 22.13 3.3 65
      SZ110 9 24600 84000 7.76 3.17 10.8 144.2 25.09 3.3 73
      SZ115 9.5 26900 91700 8.49 3.16 10.8 155.0 26.97 3.8 78
      SZ120 10 28600 97600 8.98 3.18 10.9 166.6 28.99 3.3 73
      SZ125 10 28600 97500 8.95 3.19 10.9 166.6 28.99 3.8 78
      SZ148 12 35100 119800 10.99 3.19 10.9 199.0 34.60 3.6 88
      SZ160 13 38600 131800 11.77 3.28 11.2 216.6 37.69 4.0 90
      SZ161 13 37900 129500 11.83 3.21 10.9 216.6 37.69 3.6 88
      SZ175 14 45710 136900 12.67 3.17 10.8 233.0 40.54 6.2 100
      SZ185 15 43100 147100 13.62 3.16 10.8 249.9 43.48 6.2 100
      SZ240 20 59100 201800 18.60 3.18 10.9 347.8 60.50 8.0 150
      SZ300 25 72800 248300 22.70 3.20 10.9 437.5 76.10 8.0 157
      SZ380 30 89600 305900 27.60 3.25 11.1 431.2 92.40 8.4 158

      Model Nominal Cooling Capacity 60Hz Nominal Cooling Capacity/Capacity Input Power maximum rated current COP  Displacement  Displacement  Injection flow Net.W
      TR W Btu/h kW MCC COP W/W EERBtu/h/W cmVrev m3/h dm3 kg
      R22 HRM032U4 2.7 7850 26790 2.55 9.5 3.08 10.5 43.8 7.6 1.06 31
      HRM034U4 2.8 8350 28490 2.66 9.5 3.14 10.5 46.2 8.03 1.06 31
      HRM038U4 32 9240 31520 2.94 10.0 3.14 10.7 46.2 8.03 1.06 31
      HRM040U4  3.3 9710 33120 2.98 10 3.26 11.1 54.4 9.47 1.06 31
      HRM042U4 35 10190 34770 3.13 11.0 3.26 11.1 57.2 9.95 1.06 31
      HRM045U4 3.8 10940 37310 3.45 12 3.17 10.8 61.5 10.69 1.33 31
      HRM047U4 3.9 11500 39250 3.57 12.0 3.23 11.0 64.1 11.15 1.33 31
      HRM048U4 4 11510 39270 3.57 12.5 3.23 11 64.4 11.21 1.57 37
      HRM051T4 4.3 12390 44280 3.67 13.0 3.37 11.5 68.8 11.98 1.57 37
      HRM051U4 4.3 12800 43690 3.83 13 3.34 11.4 68.8 11.98 1.57 37
      HRM054U4 4.5 13390 45680 3.97 13.1 3.37 11.5 72.9 12.69 1.57 37
      HRM058U4 4.8 14340 48930 4.25 15 3.37 11.5 78.2 13.6 1.57 37
      HRM060T4 5.0 14570 49720 4.28 15.0 3.40 11.6 81.0 14.09 1.57 37
      HRM060U4 5.0  14820 5 0571 4.4 15 3.37 11.5 81 14.09 1.57 37
      HLM068T4 5.7 16880 57580 5.00 15.0 3.37 11.5 93.1 16.20 1.57 37
      HLM072T4 6.0  17840 6 0571 5.29 15 3.37 11.5 98.7 17.2 1.57 37
      HLM075T4 6.3 18430 62880 5.37 16.0 3.43 11.7 102.8 17.88 1.57 37
      HLM081T4 6.8 19890 67880 5.8 17 3.43 11.7 110.9 19.3 1.57 37
      HCM094T4 7.8 23060 78670 6.80 21.0 3.39 11.6 126.0 21.93 2.66 44
      HCM109T4 9.1 26690 91070 7.77 24 3.43 11.7 148.8 25.89 2.66 44
      HCM120T4 10.0 29130 99390 8.51 25.0 3.42 11.7 162.4 28.26 2.66 44
      R407C HRP034T4  2.8 7940 27080 2.68 9.5 2.96 10.1 46.2 8 1.06 31
      HRP038T4 3.2 8840 30150 2.82 11 3.14 10.7 51.6 8.98 1.06 31
      HRP040T4 3.3 9110 31080 3.14 11.5 2.9 9.9 54.4 9.47 1.06 31
      HRP042T4 3.5 9580 32680 3.3 10 2.9 9.9 57.2 9.95 1.06 31
      HRP045T4 3.8 1571 36890 3.58 12 3.02 10.3 61.5 10.69 1.33 31
      HRP047T4 3.9 11130 37980 3.69 12 3.02 10.3 64.1 11.15          1.33 31
      HRP048T4 4.0  11100 37880 3.35 12 3.31 11.3 64.4 1L21 1.57 37
      HRP051T4 4.3 12120 41370 3.83 13 3.17 10.8 68.8 11.98 1.57 37
      HRP054T4 4.5 12570 42880 3.97 12.5 3.17 10.8 72.8 12.66 1.57 37
      HRP058T4 4.8 13470 45970 4.25 14.0 3.17 10.8 78.2 13.6 1.57 37
      HRP060T4 5.0  13860 47280 4.26 15 3.25 11.1 81 14.09 1.57 37
      HLP068T4 5.7 15700 53560 5.10 15.0 3.08 10.5 93.1 16.20 1.57 37
      HLP072T4 6.0  16810 57350 5.16 15 3.26 11.1 98.7 17.17 1.57 37
      HLP075T4 6.3 18040 61550 5.54 16.0 3.26 11-1 102.8 17.88 1.57 37
      HLP081T4 6.8 18600 63470 5,66 17 3.28 11,2 110,9 19,30 1,57 37
      HCP094T4 7.8 21590 73660 6.63 21.0 3.26 11.1 126.0 21.93 2.66 44
      HCP109T4 9.1 25070 85550 7.77 24 3.23 11 148.8 25.89 2.66 44
      HCP120T4 10.0 27370 93400 8.47 25.0 3.23 11.0 162.4 28.26 2.66 44
      R410A HRH571U4 2.4 7120 24310 2.43 10 2.93 10 27.8 4.84 1.06 31
      HRH031U4 26 7530 25710 2.67 10.0 2.82 9.62 29.8 5.19 1.06 31
      HRH032U4 2.7 7670 26170 2.75 10 2.79 9.51 30.6 5.33 1.06 31
      HRH034U4 2.8 8500 29000 2.90 10.0 2.93 10.0 33.3 5.75 1.06 31
      HRH036U4 3 8820 30110 3.13 10 2.82 9.62 34.7 6.04 1.06 31
      HRH038U4 3.2 9250 31560 3.35 12.0 2.76 9.41 36.5 6.36 1.06 32
      HRH040U4 3.3 15710 34810 3.58 12 2.85 9.72 39.6 6.9 1.33 32
      HRH041U4 3.3 10050 34300 3.43 12.5 2.93 10 39.3 6.8 1.57 37
      HRH044U4 3.7 1 0571 36940 3.92 13.5 2.76 9.41 42.6 7.41 1.57 37
      HRH049U4 4.1 12110 41320 4.04 13.5 2.99 10.22 47.4 8.24 1.57 37
      HRH051U4 4.3 12860 43890 4.21 13 3.05 10.42 49.3 5.58 1.57 37
      HRH054U4 4.5 13340 45510 4.41 15.0 3.02 10.32 52.1 9.07 1.57 37
      HRH056U4 4.7 13830 47200 4.58 15 3.02 1031 54.1 9.42 1.57 37
      HLH061T4 5.1 15210 51880 4.89 15.0 3.11 1061 57.8 10.10 1.57 37
      HLH068T4  5.7 16880 57610 5.26 19 3.21 1096 64.4 11.21 1.57 37
      HLJ072T4 6.0 17840 60900 5.56 19.0 3.21 11.0 68.0 11.82 1.57 37
      HLJ075T4  6.3 18600 63490 5.77 18 3.22 11 70.8 12.32 1.57 37
      HLJ083T4 6.9 20420 69690 6.28 19.0 3.25 Hl 78.1 13.59 1.57 37
      HCJ090T4 7.5 22320 76190 7.19 19 3.11 10.6 86.9 15.11 2.66 44
      HCJ105T4 8.8 26100 89090 8.25 25.0 3.16 10.8 101.6 17.68 2.66 44
      HCJ120T4 10 29610 157180 9.53 27 3.11 10.6 116.4 20.24 2.66 44

       

      Model HP Voltage
      MLM019T5LP9 2.5 220-240V-1-50HZ
      MLM571T5LP9 3 220-240V-1-50HZ
      MLM026T5LP9 3.5 220-240V-1-50HZ
      MLM015T4LP9 2 380-415V-3-50Hz&460V-3-60Hz
      MLM019T4LP9 2.5 380-415V-3-50Hz&460V-3-60Hz
      MLM571T4LP9 3 380-415V-3-50Hz&460V-3-60Hz
      MLM026T4LP9 3.5 380-415V-3-50Hz&460V-3-60Hz
      MLM030T4LC9 4 380-415V-3-50Hz&460V-3-60Hz
      MLM038T4LC9 5 380-415V-3-50Hz&460V-3-60Hz
      MLM045T4LC9 6 380-415V-3-50Hz&460V-3-60Hz
      MLM048T4LC9 7 380-415V-3-50Hz&460V-3-60Hz
      MLM058T4LC9 7.5 380-415V-3-50Hz&460V-3-60Hz
      MLM066T4LC9 9 380-415V-3-50Hz&460V-3-60Hz
      MLM076T4LC9 10 380-415V-3-50Hz&460V-3-60Hz
      *MLM series general-purpose lubricating oil is AB alkyl benzene oil, the refrigerant is R22.
       
      Model HP Voltage
      MLZ019T5LP9 2.5 220-240V-1-50HZ
      MLZ571T5LP9 3 220-240V-1-50HZ
      MLZ026T5LP9 3.5 220-240V-1-50HZ
      MLZ015T4LP9 2 380-415V-3-50Hz&460V-3-60Hz
      MLZ019T4LP9 2.5 380-415V-3-50Hz&460V-3-60Hz
      MLZ571T4LP9 3 380-415V-3-50Hz&460V-3-60Hz
      MLZ026T4LP9 3.5 380-415V-3-50Hz&460V-3-60Hz
      MLZ030T4LC9 4 380-415V-3-50Hz&460V-3-60Hz
      MLZ038T4LC9 5 380-415V-3-50Hz&460V-3-60Hz
      MLZ045T4LC9 6 380-415V-3-50Hz&460V-3-60Hz
      MLZ048T4LC9 7 380-415V-3-50Hz&460V-3-60Hz
      MLZ058T4LC9 7.5 380-415V-3-50Hz&460V-3-60Hz
      MLZ066T4LC9 9 380-415V-3-50Hz&460V-3-60Hz
      MLZ076T4LC9 10 380-415V-3-50Hz&460V-3-60Hz
      *MLM series general-purpose lubricating oil is PVE ugly oil, refrigerant R404A/R134A/R507/R22

      Archean refrigeration has been focusing on the refrigeration industry for more than 10 years. The compressors are sold all over the world and have been well received. The company has accumulated strong experience in the compressor market, rich technical support, and a satisfactory one-stop procurement solution. You can rest assured You don’t need to worry about this series, from placing an order to receiving the goods. We provide a complete solution to serve customers well, which is our purpose of hospitality.

       

      /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      Installation Type: Movable Type
      Lubrication Style: Lubricated
      Cylinder Position: Vertical
      Model: Hrp060t4
      Samples:
      US$ 100/Piece
      1 Piece(Min.Order)

      |
      Request Sample

      Customization:
      Available

      |

      air compressor

      What is the role of air compressors in power generation?

      Air compressors play a significant role in power generation, supporting various operations and equipment within the industry. Here are some key roles of air compressors in power generation:

      1. Combustion Air Supply:

      Air compressors are used to supply compressed air for the combustion process in power generation. In fossil fuel power plants, such as coal-fired or natural gas power plants, compressed air is required to deliver a steady flow of air to the burners. The compressed air helps in the efficient combustion of fuel, enhancing the overall performance and energy output of the power plant.

      2. Instrumentation and Control:

      Air compressors are utilized for instrumentation and control systems in power generation facilities. Compressed air is used to operate pneumatic control valves, actuators, and other pneumatic devices that regulate the flow of steam, water, and gases within the power plant. The reliable and precise control provided by compressed air ensures efficient and safe operation of various processes and equipment.

      3. Cooling and Ventilation:

      In power generation, air compressors are involved in cooling and ventilation applications. Compressed air is used to drive air-operated cooling fans and blowers, providing adequate airflow for cooling critical components such as generators, transformers, and power electronics. The compressed air also assists in maintaining proper ventilation in control rooms, substations, and other enclosed spaces, helping to dissipate heat and ensure a comfortable working environment.

      4. Cleaning and Maintenance:

      Air compressors are employed for cleaning and maintenance tasks in power generation facilities. Compressed air is utilized to blow away dust, dirt, and debris from equipment, machinery, and electrical panels. It helps in maintaining the cleanliness and optimal performance of various components, reducing the risk of equipment failure and improving overall reliability.

      5. Pneumatic Tools and Equipment:

      In power generation plants, air compressors provide the necessary compressed air for operating pneumatic tools and equipment. These tools include impact wrenches, pneumatic drills, grinders, and sandblasting equipment, which are utilized for installation, maintenance, and repair tasks. The high-pressure air generated by compressors enables efficient and reliable operation of these tools, enhancing productivity and reducing manual effort.

      6. Nitrogen Generation:

      Sometimes, air compressors are used in power generation for nitrogen generation. Compressed air is passed through a nitrogen generator system, which separates nitrogen from other components of air, producing a high-purity nitrogen gas stream. Nitrogen is commonly used in power plant applications, such as purging systems, blanketing in transformers, and generator cooling, due to its inert properties and low moisture content.

      7. Start-up and Emergency Systems:

      Air compressors are an integral part of start-up and emergency systems in power generation. Compressed air is utilized to power pneumatic starters for gas turbines, providing the initial rotation needed to start the turbine. In emergency situations, compressed air is also used to actuate emergency shutdown valves, safety systems, and fire suppression equipment, ensuring the safe operation and protection of the power plant.

      Overall, air compressors contribute to the efficient and reliable operation of power generation facilities, supporting combustion processes, control systems, cooling, cleaning, and various other applications critical to the power generation industry.

      air compressor

      What are the environmental considerations when using air compressors?

      When using air compressors, there are several environmental considerations to keep in mind. Here’s an in-depth look at some of the key factors:

      Energy Efficiency:

      Energy efficiency is a crucial environmental consideration when using air compressors. Compressing air requires a significant amount of energy, and inefficient compressors can consume excessive power, leading to higher energy consumption and increased greenhouse gas emissions. It is important to choose energy-efficient air compressors that incorporate features such as Variable Speed Drive (VSD) technology and efficient motor design, as they can help minimize energy waste and reduce the carbon footprint.

      Air Leakage:

      Air leakage is a common issue in compressed air systems and can contribute to energy waste and environmental impact. Leaks in the system result in the continuous release of compressed air, requiring the compressor to work harder and consume more energy to maintain the desired pressure. Regular inspection and maintenance of the compressed air system to detect and repair leaks can help reduce air loss and improve overall energy efficiency.

      Noise Pollution:

      Air compressors can generate significant noise levels during operation, which can contribute to noise pollution. Prolonged exposure to high noise levels can have detrimental effects on human health and well-being and can also impact the surrounding environment and wildlife. It is important to consider noise reduction measures such as sound insulation, proper equipment placement, and using quieter compressor models to mitigate the impact of noise pollution.

      Emissions:

      While air compressors do not directly emit pollutants, the electricity or fuel used to power them can have an environmental impact. If the electricity is generated from fossil fuels, the associated emissions from power plants contribute to air pollution and greenhouse gas emissions. Choosing energy sources with lower emissions, such as renewable energy, can help reduce the environmental impact of operating air compressors.

      Proper Waste Management:

      Proper waste management is essential when using air compressors. This includes the appropriate disposal of compressor lubricants, filters, and other maintenance-related materials. It is important to follow local regulations and guidelines for waste disposal to prevent contamination of soil, water, or air and minimize the environmental impact.

      Sustainable Practices:

      Adopting sustainable practices can further reduce the environmental impact of using air compressors. This can include implementing preventive maintenance programs to optimize performance, reducing idle time, and promoting responsible use of compressed air by avoiding overpressurization and optimizing system design.

      By considering these environmental factors and taking appropriate measures, it is possible to minimize the environmental impact associated with the use of air compressors. Choosing energy-efficient models, addressing air leaks, managing waste properly, and adopting sustainable practices can contribute to a more environmentally friendly operation.

      air compressor

      How does an air compressor work?

      An air compressor works by using mechanical energy to compress and pressurize air, which is then stored and used for various applications. Here’s a detailed explanation of how an air compressor operates:

      1. Air Intake: The air compressor draws in ambient air through an intake valve or filter. The air may pass through a series of filters to remove contaminants such as dust, dirt, and moisture, ensuring the compressed air is clean and suitable for its intended use.

      2. Compression: The intake air enters a compression chamber, typically consisting of one or more pistons or a rotating screw mechanism. As the piston moves or the screw rotates, the volume of the compression chamber decreases, causing the air to be compressed. This compression process increases the pressure and reduces the volume of the air.

      3. Pressure Build-Up: The compressed air is discharged into a storage tank or receiver where it is held at a high pressure. The tank allows the compressed air to be stored for later use and helps to maintain a consistent supply of compressed air, even during periods of high demand.

      4. Pressure Regulation: Air compressors often have a pressure regulator that controls the output pressure of the compressed air. This allows the user to adjust the pressure according to the requirements of the specific application. The pressure regulator ensures that the compressed air is delivered at the desired pressure level.

      5. Release and Use: When compressed air is needed, it is released from the storage tank or receiver through an outlet valve or connection. The compressed air can then be directed to the desired application, such as pneumatic tools, air-operated machinery, or other pneumatic systems.

      6. Continued Operation: The air compressor continues to operate as long as there is a demand for compressed air. When the pressure in the storage tank drops below a certain level, the compressor automatically starts again to replenish the compressed air supply.

      Additionally, air compressors may include various components such as pressure gauges, safety valves, lubrication systems, and cooling mechanisms to ensure efficient and reliable operation.

      In summary, an air compressor works by drawing in air, compressing it to increase its pressure, storing the compressed air, regulating the output pressure, and releasing it for use in various applications. This process allows for the generation of a continuous supply of compressed air for a wide range of industrial, commercial, and personal uses.

      China Good quality Danfos Scroll Parts Air Cooler Refrigeration Compressor Danfos 50Hz R407c Single Hrp060t4 in Stock   with high qualityChina Good quality Danfos Scroll Parts Air Cooler Refrigeration Compressor Danfos 50Hz R407c Single Hrp060t4 in Stock   with high quality
      editor by CX 2024-02-16

      China high quality Delicate Appearance Low Price Oxygen Generator Air Compressor best air compressor

      Product Description

      Product Description

      OIL FREE OILLESS HIGH PRESSURE RECIPROCATING COMPRESSOR ,
      ADVANTAGE:
      1.TOTALLY 100% OIL FREE,NO NEED OIL
      2.SUITABLE FOR OXYGEN,HYDROGEN,NITROGEN,HELIUM,ARGON,CNG AND SPECIAL GAS
      3.NO POLLUTION ,KEEP SAME PURITY TO INLET GAS 
      4.RELIABLE AND TOP QUALITY,COMPARABLE WITH USA RIX BRAND.
      5.TOP COST PERFORMANCE,LOW MAINTENANCE COST AND EASY TO BE OPERATIONAL, ONLY NEED TO BE CHANGE PISTON RING
      6.4000 HOURS PISTON RING WORKING LIFE,1500-200O HOURS WORKING LIFE FOR FINAL STAGE RING
      7.TOP BRAND MOTOR,AND CAN BE SPECIAL POINTED ,LIKE SIMENSE BRAND 
      8.SUPPLY JAPAN MARKET,QUALITY APPROVAL BY JAPAN STRICKLY SYSTEM
      9.CE APPROVAL  

      All our models can be customized. For more information, pleaes do not hesitate to contact.

       FAQ

      Q1: Can I get samples from your factory?

      A: Due our compressor is high value machine ,we do not provide free sample for the customer

       

      Q2: If products have some quality problem, how would you deal with?

      A: our equipment is high quality design,few equipment has problem, in case of quality happened in the Guarantee time,we will provide parts to customer for free ,we customer can replace it by our internet technical instruction or by video instruction

       

      Q3. Our delivery date

      A:Generally, 3-10days

       

      Q4. What is the standard of package?

      A:Export plywood packing ,attached pictures

       

      Q5. Do you accept OEM business?

      A:Yes, we accept OEM business

       

      Q6. what kind of certificate you have ?

      A:We have ISO9001, CE approval

       

      Q7.How to maintain and repair

      A:Our compressors have operation and maintenance instructions, as well as maintenance and repair videos. Customers can follow the maintenance video operation and replace the accessories. If you are not sure, you can contact our online customer service staff.

       

      Q8.Our warranty

      A:For the main components of the compressor, we provide a 12-month warranty period after shipment.If the main parts are damaged under normal use, we will send you an international express to us free of charge, and the customer will complete the installation and maintenance under our guidance.The main components include: motor, crankcase, cylinder, crankshaft, connecting rod, piston, fan, bearing and other major components. Among them, wearing parts, various sealing rings, guiding rings are not included.

       

      Q9. What is the location of your factory?

      A:Our factory is located in the HangZhou city ZheJiang Province, China.take 4hours by high speed train From ZheJiang ,there is 1 round flight per day from ZheJiang to HangZhou city

       

      Q10. How to solve quality problems?

      A:If the compressor met quality problems ,customer will find the faulty reason by our technical person instruction ,and we offer resolution ,in the quality guarantee time ,the parts are free ,if out of warranty date ,we will charge the cost the most problems we meet is how to do maintenance for the compressor ,and normally ,for the compressor we need to replace piston ring ,guide ring ,and valve etcs ,we have compressor maintenance video to teach customer how to do it ,and customer should watch it before do the maintenance ,and also can consult our technical service person Also ,we welcome customer dispatch labor to our factory to get professional compressor repair and maintenance training.

       

        /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      Lubrication Style: Oil-free
      Cooling System: Air Cooling
      Cylinder Arrangement: Balanced Opposed Arrangement
      Cylinder Position: Vertical
      Structure Type: Closed Type
      Compress Level: Multistage
      Customization:
      Available

      |

      air compressor

      What is the role of air compressors in power generation?

      Air compressors play a significant role in power generation, supporting various operations and equipment within the industry. Here are some key roles of air compressors in power generation:

      1. Combustion Air Supply:

      Air compressors are used to supply compressed air for the combustion process in power generation. In fossil fuel power plants, such as coal-fired or natural gas power plants, compressed air is required to deliver a steady flow of air to the burners. The compressed air helps in the efficient combustion of fuel, enhancing the overall performance and energy output of the power plant.

      2. Instrumentation and Control:

      Air compressors are utilized for instrumentation and control systems in power generation facilities. Compressed air is used to operate pneumatic control valves, actuators, and other pneumatic devices that regulate the flow of steam, water, and gases within the power plant. The reliable and precise control provided by compressed air ensures efficient and safe operation of various processes and equipment.

      3. Cooling and Ventilation:

      In power generation, air compressors are involved in cooling and ventilation applications. Compressed air is used to drive air-operated cooling fans and blowers, providing adequate airflow for cooling critical components such as generators, transformers, and power electronics. The compressed air also assists in maintaining proper ventilation in control rooms, substations, and other enclosed spaces, helping to dissipate heat and ensure a comfortable working environment.

      4. Cleaning and Maintenance:

      Air compressors are employed for cleaning and maintenance tasks in power generation facilities. Compressed air is utilized to blow away dust, dirt, and debris from equipment, machinery, and electrical panels. It helps in maintaining the cleanliness and optimal performance of various components, reducing the risk of equipment failure and improving overall reliability.

      5. Pneumatic Tools and Equipment:

      In power generation plants, air compressors provide the necessary compressed air for operating pneumatic tools and equipment. These tools include impact wrenches, pneumatic drills, grinders, and sandblasting equipment, which are utilized for installation, maintenance, and repair tasks. The high-pressure air generated by compressors enables efficient and reliable operation of these tools, enhancing productivity and reducing manual effort.

      6. Nitrogen Generation:

      Sometimes, air compressors are used in power generation for nitrogen generation. Compressed air is passed through a nitrogen generator system, which separates nitrogen from other components of air, producing a high-purity nitrogen gas stream. Nitrogen is commonly used in power plant applications, such as purging systems, blanketing in transformers, and generator cooling, due to its inert properties and low moisture content.

      7. Start-up and Emergency Systems:

      Air compressors are an integral part of start-up and emergency systems in power generation. Compressed air is utilized to power pneumatic starters for gas turbines, providing the initial rotation needed to start the turbine. In emergency situations, compressed air is also used to actuate emergency shutdown valves, safety systems, and fire suppression equipment, ensuring the safe operation and protection of the power plant.

      Overall, air compressors contribute to the efficient and reliable operation of power generation facilities, supporting combustion processes, control systems, cooling, cleaning, and various other applications critical to the power generation industry.

      air compressor

      How do you choose the right air compressor for woodworking?

      Choosing the right air compressor for woodworking is essential to ensure efficient and effective operation of pneumatic tools and equipment. Here are some factors to consider when selecting an air compressor for woodworking:

      1. Required Air Volume (CFM):

      Determine the required air volume or cubic feet per minute (CFM) for your woodworking tools and equipment. Different tools have varying CFM requirements, so it is crucial to choose an air compressor that can deliver the required CFM to power your tools effectively. Make sure to consider the highest CFM requirement among the tools you’ll be using simultaneously.

      2. Tank Size:

      Consider the tank size of the air compressor. A larger tank allows for more stored air, which can be beneficial when using tools that require short bursts of high air volume. It helps maintain a consistent air supply and reduces the frequency of the compressor cycling on and off. However, if you have tools with continuous high CFM demands, a larger tank may not be as critical.

      3. Maximum Pressure (PSI):

      Check the maximum pressure (PSI) rating of the air compressor. Woodworking tools typically operate within a specific PSI range, so ensure that the compressor can provide the required pressure. It is advisable to choose an air compressor with a higher maximum PSI rating to accommodate any future tool upgrades or changes in your woodworking needs.

      4. Noise Level:

      Consider the noise level of the air compressor, especially if you’ll be using it in a residential or shared workspace. Some air compressors have noise-reducing features or are designed to operate quietly, making them more suitable for woodworking environments where noise control is important.

      5. Portability:

      Assess the portability requirements of your woodworking projects. If you need to move the air compressor frequently or work in different locations, a portable and lightweight compressor may be preferable. However, if the compressor will remain stationary in a workshop, a larger, stationary model might be more suitable.

      6. Power Source:

      Determine the power source available in your woodworking workspace. Air compressors can be powered by electricity or gasoline engines. If electricity is readily available, an electric compressor may be more convenient and cost-effective. Gasoline-powered compressors offer greater flexibility for remote or outdoor woodworking projects where electricity may not be accessible.

      7. Quality and Reliability:

      Choose an air compressor from a reputable manufacturer known for producing reliable and high-quality equipment. Read customer reviews and consider the warranty and after-sales support offered by the manufacturer to ensure long-term satisfaction and reliability.

      8. Budget:

      Consider your budget and balance it with the features and specifications required for your woodworking needs. While it’s important to invest in a reliable and suitable air compressor, there are options available at various price points to accommodate different budgets.

      By considering these factors and evaluating your specific woodworking requirements, you can choose an air compressor that meets the demands of your tools, provides efficient performance, and enhances your woodworking experience.

      air compressor

      How do you choose the right size of air compressor for your needs?

      Choosing the right size of air compressor is essential to ensure optimal performance and efficiency for your specific needs. Here are some factors to consider when selecting the appropriate size:

      1. Air Demand: Determine the air demand requirements of your applications. Calculate the total CFM (Cubic Feet per Minute) needed by considering the air consumption of all the pneumatic tools and equipment that will be operated simultaneously. Choose an air compressor with a CFM rating that meets or exceeds this total demand.

      2. Pressure Requirements: Consider the required operating pressure for your applications. Check the PSI (Pounds per Square Inch) rating of the tools and equipment you will be using. Ensure that the air compressor you choose can deliver the necessary pressure consistently.

      3. Duty Cycle: Evaluate the duty cycle of the air compressor. The duty cycle represents the percentage of time the compressor can operate within a given time period without overheating or experiencing performance issues. If you require continuous or heavy-duty operation, choose a compressor with a higher duty cycle.

      4. Power Source: Determine the available power source at your location. Air compressors can be powered by electricity or gasoline engines. Ensure that the chosen compressor matches the available power supply and consider factors such as voltage, phase, and fuel requirements.

      5. Portability: Assess the portability requirements of your applications. If you need to move the air compressor frequently or use it in different locations, consider a portable or wheeled compressor that is easy to transport.

      6. Space and Noise Constraints: Consider the available space for installation and the noise restrictions in your working environment. Choose an air compressor that fits within the allocated space and meets any noise regulations or requirements.

      7. Future Expansion: Anticipate any potential future expansions or increases in air demand. If you expect your air demand to grow over time, it may be wise to choose a slightly larger compressor to accommodate future needs and avoid the need for premature replacement.

      8. Budget: Consider your budgetary constraints. Compare the prices of different air compressor models while ensuring that the chosen compressor meets your specific requirements. Keep in mind that investing in a higher-quality compressor may result in better performance, durability, and long-term cost savings.

      By considering these factors and evaluating your specific needs, you can choose the right size of air compressor that will meet your air demand, pressure requirements, and operational preferences, ultimately ensuring efficient and reliable performance.

      China high quality Delicate Appearance Low Price Oxygen Generator Air Compressor   best air compressorChina high quality Delicate Appearance Low Price Oxygen Generator Air Compressor   best air compressor
      editor by CX 2024-02-15

      China Best Sales Oil Free Air Compressor, Vacuum Air Pump, Air Compressor with Great quality

      Product Description

      Made by Aluminum alloy
      Small body, small weight
      High pressure and Oil free

      The high press air compressor made by aluminum alloy, that make it samll body and small weight.

      The products are widely used for new energy bus, truck, Environmental Protection Engineering, Electronic Engineering, industry absorbing, etc. Our factory passed the CCC authentication in 2003, and passed the certificate of CE Standard in 2006. Which assureed the security quality of the products. The technology of our factory is advanced. We imported and used the international advanced technology to make the fight of the quality. Now our products are exported to European countries and America. There are over 300 distributors by special arrangement sellors all over China to provide best service.

      Item No.: BIX55-4V
      1. Power is 3.0KW.
      2. Voltage is 3 phase 220V to 415V. 50Hz/60Hz
      3. Air flux is 500L / MIN
      4. Air pressure is 10 ba
      5. Oil free
      6. Assembly dimensions: 590×470×440 MM
      7. Product net weight: 48KGS

       

      Welcome to send us your product drawings for quotation.

      Small quantity order is acceptable.

      We pay attention to your inquriy, and take quotation as our

      important work.

       

      ZheJiang CHINAMFG Electrical Machinery Equipment Co., Ltd

      Contact man: Austin.Wang

      /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      Oil or Not: Oil Free
      Structure: Rotary Vacuum Pump
      Exhauster Method: Entrapment Vacuum Pump
      Vacuum Degree: High Vacuum
      Work Function: Pre-Suction Pump
      Working Conditions: Dry
      Samples:
      US$ 600/Piece
      1 Piece(Min.Order)

      |
      Request Sample

      Customization:
      Available

      |

      air compressor

      Can Water-Lubricated Air Compressors Be Used in Cold Climates?

      Water-lubricated air compressors can be used in cold climates, but there are certain considerations and precautions to keep in mind. Here’s a detailed explanation of using water-lubricated air compressors in cold climates:

      Freezing of Water:

      • Potential for Freezing: In cold climates, the water used for lubrication in water-lubricated compressors can freeze, which can cause operational issues and damage to the equipment. Freezing can occur in the water supply lines, lubrication system, or water jackets if the temperature drops below the freezing point of water.
      • Water Temperature: It is important to ensure that the water temperature remains above freezing throughout the compressor system. This can be achieved by using insulation, heat tracing, or heaters to maintain adequate water temperature. Monitoring the water temperature and implementing appropriate heating measures are crucial to prevent freezing-related problems.

      Protection and Insulation:

      • Protecting External Components: External components of water-lubricated compressors, such as valves, fittings, and pipes, may be exposed to cold temperatures. Insulating these components can help prevent freezing and ensure their proper functioning. Insulation materials, such as foam wraps or heat tapes, can be used to provide thermal protection.
      • Water Supply Lines: Water supply lines that feed the compressor should be properly insulated and protected from freezing temperatures. Insulation can help maintain the water temperature and prevent freezing within the supply lines. Additionally, measures such as burying the supply lines below the frost line or using heat tracing cables can offer further protection against freezing.

      Alternative Lubrication Methods:

      • Oil-Lubricated Compressors: In extremely cold climates, where freezing is a significant concern, using oil-lubricated compressors instead of water-lubricated ones may be a more practical option. Oil-based lubrication systems are less prone to freezing and can provide reliable operation in colder temperatures. However, it is important to consider the specific requirements and limitations of oil-lubricated compressors for the intended application.

      Manufacturer Recommendations:

      • Consulting the Manufacturer: It is crucial to consult the manufacturer’s guidelines and recommendations regarding the use of water-lubricated compressors in cold climates. Manufacturers may provide specific instructions, modifications, or alternative solutions to ensure the safe and efficient operation of their equipment under cold weather conditions.

      By implementing proper insulation, heating measures, and following the manufacturer’s guidance, water-lubricated air compressors can be used effectively in cold climates. It is important to assess the specific requirements of the application and consider the potential challenges associated with freezing temperatures to ensure the reliable and safe operation of the water-lubricated compressor system.

      air compressor

      Are There Any Potential Water-Related Issues with These Compressors?

      Yes, there are potential water-related issues that can arise with water-lubricated compressors. Here’s a detailed explanation of some of the common water-related issues associated with these compressors:

      Corrosion:

      • Internal Corrosion: Water-lubricated compressors are susceptible to internal corrosion due to the presence of water within the system. If the water used is not properly treated or if corrosion prevention measures are insufficient, the internal components of the compressor can corrode over time. Corrosion can lead to reduced performance, component damage, and the potential for leaks or system failures.
      • External Corrosion: External components such as piping, valves, and fittings can also be affected by corrosion if exposed to water and moisture. Corrosion on these external surfaces can lead to compromised integrity, leaks, and reduced system efficiency.

      Water Quality:

      • Water Contaminants: The quality of the water used in water-lubricated compressors is crucial. If the water contains contaminants such as sediment, debris, oil, or chemicals, it can negatively impact the performance and reliability of the compressor. Contaminants can cause blockages, clogging, increased wear on components, reduced lubrication effectiveness, and potential damage to the compressor.
      • Water Hardness: Water hardness, characterized by high mineral content, can lead to scaling and deposits within the compressor and associated components. Scaling can restrict flow, impede heat transfer, and reduce the efficiency of the compressor. It can also contribute to fouling and corrosion issues.

      Water Treatment and Filtration:

      • Inadequate Water Treatment: Insufficient or improper water treatment can lead to various issues. If the water is not adequately treated for contaminants, hardness, or pH levels, it can result in accelerated corrosion, scaling, fouling, and reduced lubrication effectiveness. Inadequate water treatment can also contribute to increased maintenance requirements and decreased overall compressor performance.
      • Filtration System Issues: Filtration systems play a crucial role in removing contaminants from the water. However, if the filtration system is not properly maintained, filters become clogged or damaged, or if there are design or installation issues, it can lead to inadequate filtration and compromised water quality. This can result in the accumulation of contaminants, reduced lubrication performance, and potential damage to the compressor.

      Water Supply and Availability:

      • Insufficient Water Supply: Water-lubricated compressors rely on a consistent and reliable water supply. If the water supply is insufficient in terms of flow rate, pressure, or quality, it can impact the compressor’s operation and performance. Inadequate water supply can lead to inadequate lubrication, reduced cooling capacity, and increased wear on components.
      • Water Source Availability: The availability of a suitable water source is essential for water-lubricated compressors. In certain locations or applications, accessing clean water or meeting specific water quality requirements may pose challenges. Lack of a suitable water source can limit the feasibility or effectiveness of using water-lubricated compressors.

      It is important to address these potential water-related issues by implementing proper water treatment, corrosion prevention measures, regular maintenance of filtration systems, and monitoring of water quality. Adhering to manufacturer guidelines, performing regular inspections, and taking proactive measures can help mitigate these issues and ensure the reliable and efficient operation of water-lubricated compressors.

      air compressor

      Are Water Lubrication Air Compressors More Environmentally Friendly?

      Water lubrication in air compressors offers several environmental benefits compared to traditional lubrication methods. Here are some reasons why water lubrication is considered more environmentally friendly:

      1. Non-toxic and biodegradable: Water is a natural substance that is non-toxic and biodegradable. It does not contain harmful chemicals or additives that can pollute the air or water systems. When water lubricants are used in air compressors, there is a reduced risk of environmental contamination.
      2. Reduced air pollution: Traditional lubricants, such as oils or synthetic lubricants, can release volatile organic compounds (VOCs) into the air during operation. VOCs contribute to air pollution and can have detrimental effects on human health and the environment. Water lubrication eliminates the release of VOCs, resulting in improved air quality and reduced air pollution.
      3. Minimized water pollution: Water lubrication does not introduce additional pollutants into water systems. Unlike oils or synthetic lubricants, water does not leave behind harmful residues or contaminants that can contaminate water sources. This helps to protect aquatic ecosystems and maintain water quality.
      4. Energy efficiency: Water lubrication can contribute to energy efficiency in air compressors. Water has excellent heat transfer properties, allowing for efficient dissipation of heat generated during compressor operation. By effectively managing heat, water lubrication helps to reduce energy consumption and improve overall compressor efficiency.
      5. Sustainable resource: Water is a renewable resource that is readily available in nature. Unlike oil or synthetic lubricants, which require extraction and processing, water can be sourced sustainably. This reduces the reliance on finite resources and promotes a more sustainable approach to lubrication in air compressors.

      Overall, water lubrication in air compressors is considered more environmentally friendly due to its non-toxic nature, reduced air and water pollution, energy efficiency, and sustainable resource usage.

      China Best Sales Oil Free Air Compressor, Vacuum Air Pump, Air Compressor   with Great qualityChina Best Sales Oil Free Air Compressor, Vacuum Air Pump, Air Compressor   with Great quality
      editor by CX 2024-02-15

      China Good quality CHINAMFG Oil and Oil Free Air Compressor Copper Wire Portable Movable Piston Oilless Silent Oil Free 1HP 2HP 3HP 9L 24L 25L 30L 40L 50L 100L Air Compressor with Great quality

      Product Description

                SINCE 1988
      ZHangZhouG CHINAMFG PUMP INDUSTRY CO.,LTD.

      Product Description

      Xinya 24L CE Direct Driven Oil-free Air Compressor
      Equipped with pressure regulator, pressure gauge, quick connect air outlet, safety valve, on/off switch.
      Fully automatic control system aims at operation convenience, safety and reliability.
      CE, ROHS, ISO9001 certificated.

      Model Tank(L) Exhaust volume (L/min) Stroke(mm) Power(w) Voltage(V) Speed(r.p.i) Pressure(bar) Measurement
      XY-2624 24 105 14 800 110/220 1380 8 56*23*53
      XY-2824 24 179 12 900 110/220 2650 8 56*23*53
      XY-3824 24 237 14 1350 110/220 2650 8 56*23*53
      XY-5824 24 270 16 1600 110/220 2650 8 56*23*55
      XY-5830 30 270 16 1600 110/220 2650 8 58*25*56
      XY-5850 50 270 16 1600 110/220 2650 8 66*31*61

      Electric direct driven oil-free air compressors
      1.Motor-direct driven oil-free
      2.Motor with thermal protection system
      3.Maintenance-free & permanent lubrication system
      4.Aluminum cylinder head and crankcase for better heat dissipation   
      5.Easy-open drain valve   
      6.Regulator with gauge to show pressure
      7.Quick connector is available      
      8.Plastic coating tank

      Detailed Photos

      Application

      Packaging & Shipping

      For Model: XY3824
      Natural carton packing with foam protector
      1PCS/CTN
      Including:air filter,breather,wheel,bolt,foot pad
      Carton size:56*23*53cm
      950pcs/40HQ

      Similar products

       

      Company Profile

      Excellent Manufacturer
      Established in 1988,ZHangZhoug CHINAMFG Pump Industry Co.,Ltd.Has been dedicated to the technology research,production-manufacturing,and marketing of air compressors,water pump and solar pumps.

      We are ZHangZhoug key private enterprise and pioneering backbone enterprise. We have the most advanced technology in both production and management. We have a very powerful Research& Development team. We carry on strict monitoring and control to products by many kinds of advanced apparatus with third-party qualified laboratory.Welcome to inquiry!

      Certifications

      Exhibitions

      FAQ

      Q: Are you manufacturer or trading factory?
      A: We are factory, located in HangZhou pump industry zone.

      Q: What is your MOQ?
      A:

      Product ready good Customized goods
      Vibration pump 1pc/model 1000pcs/model
      Solar pump 1pc/model  50pcs/model
      Direct-driven air compressor 1pc/model  100pcs/model
      Belt-driven air compressor 1pc/model mixed model for 1*40HQ
      Oil free air compressor 1pc/model 100pcs/model
      Air pump 1pc/model 100pcs/model

      Q: May OEM?
      A: OK, pls provide your logo design files when PI is comfirmed.

      Q: May I buy 1pc sample first? And How long?
      A: Of course, we support sampling order, especially for new customers.
           Ready goods, within 3 working days; Customized goods, 15-45 days.

      Q: What is your Payment terms?
      A: Sample: 100% payment in advance
          Official order: 30% deposit TT and 70% balance against BL copy

      Q: What about the warranty?
      A: one-year quality guarantee policy. Money refunded if any quality issues come up.

      Q: Where is the landing port?
      A: HangZhou port, China. 
           If ZheJiang or other port, pls inform us in advance.

      Q: May I visit your factory? Where?
      A: Welcome to ZHangZhoug CHINAMFG Pump Industry Co.,ltd
           Address: DaXi Pump Industrial Zone, DaXi Town, WenLing City, ZheJiang Province, China.
           Nearest railway station: 1. HangZhou station, 2. HangZhou station, 3. HangZhou station;
           Nearest air port: 1. HangZhou airport, 2. HangZhou airport

      Please feel free to contact us,thank you. /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      After-sales Service: Online After Service
      Warranty: 1 Year
      Lubrication Style: Oil-free
      Samples:
      US$ 200/Piece
      1 Piece(Min.Order)

      |

      Order Sample

      aluminum wire, 220/50HZ, standard product
      Customization:
      Available

      |

      .shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}

      Shipping Cost:

      Estimated freight per unit.







      about shipping cost and estimated delivery time.
      Payment Method:







       

      Initial Payment



      Full Payment
      Currency: US$
      Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

      air compressor

      How Do Water-Lubricated Air Compressors Impact Compressed Air Quality?

      Water-lubricated air compressors can have an impact on the quality of the compressed air they produce. Here’s a detailed explanation of how water-lubricated air compressors can affect compressed air quality:

      Moisture Content:

      • Condensation: Water-lubricated compressors introduce moisture into the compressed air system. During the compression process, as the air cools downstream, moisture can condense and accumulate. This moisture can lead to issues such as corrosion, rust, and contamination of downstream equipment or processes.
      • Water Carryover: If the compressor’s water separation mechanisms are not efficient or if there are malfunctions in the water removal systems, water droplets or mist may carry over into the compressed air. This can negatively impact the quality of the compressed air and introduce moisture-related issues downstream.

      Contamination:

      • Oil Contamination: In some water-lubricated compressors, there is a potential for oil to mix with the water used for lubrication. If oil and water emulsify or if there are leaks in the compressor system, oil contamination may occur. Oil-contaminated compressed air can have adverse effects on downstream processes, equipment, and products. It can lead to contamination, reduced performance of pneumatic components, and potential health and safety concerns.
      • Particulate Contamination: Water-lubricated compressors can introduce particulate matter, such as sediment, debris, or rust, into the compressed air system. This can occur if the water supply or water treatment systems are not adequately filtered or maintained. Particulate contamination can clog or damage pneumatic equipment, affect product quality, and cause operational issues in downstream applications.

      Preventive Measures:

      • Water Separation: Water-lubricated compressors employ various water separation mechanisms to remove moisture from the compressed air. This includes moisture separators, water traps, or coalescing filters that are specifically designed to capture and remove water droplets or mist from the compressed air stream. Regular maintenance and inspection of these separation systems are necessary to ensure their proper functioning.
      • Air Treatment: Additional air treatment components, such as air dryers or desiccant systems, can be installed downstream of water-lubricated compressors to further reduce moisture content in the compressed air. These systems help to remove moisture that may have carried over from the compressor and ensure that the compressed air meets the required dryness standards for specific applications.
      • Proper Maintenance: Regular maintenance of water-lubricated compressors is essential to minimize the potential impact on compressed air quality. This includes routine inspection, cleaning, and replacement of filters, lubrication systems, and water separation components. Addressing any leaks, malfunctioning components, or system issues promptly can help maintain the integrity of the compressed air and prevent contamination or excessive moisture levels.

      By implementing appropriate water separation mechanisms, air treatment systems, and maintenance practices, the impact of water-lubricated air compressors on compressed air quality can be minimized. It is important to consider the specific requirements of the application and follow industry standards and guidelines to ensure the desired compressed air quality is achieved.

      air compressor

      How Do You Troubleshoot Common Problems with Water-Lubrication Systems?

      When encountering common problems with water-lubrication systems, it is essential to follow a systematic troubleshooting approach. Here’s a detailed explanation of the steps involved in troubleshooting common issues with water-lubrication systems:

      Step 1: Identify the Problem:

      The first step is to identify the specific problem or symptom that is affecting the water-lubrication system. Common problems may include inadequate lubrication, water leaks, abnormal noises, or reduced system performance. Understanding the specific issue will help in determining the appropriate troubleshooting steps.

      Step 2: Check Water Supply:

      Verify that there is a proper water supply to the system. Ensure that the water source is connected and flowing adequately. Check for any obstructions or restrictions in the water lines that may be affecting the water flow to the lubrication system.

      Step 3: Inspect Water Filters and Strainers:

      Water filters and strainers are used in water-lubrication systems to remove debris and impurities from the water. Inspect these filters and strainers for clogs or blockages that may be hindering the water flow. Clean or replace the filters as necessary to ensure proper water filtration.

      Step 4: Verify Water Pressure:

      Check the water pressure within the system to ensure it falls within the recommended range. Low water pressure can result in inadequate lubrication, while high water pressure can cause leaks or damage to the system. Use a pressure gauge to measure the water pressure and adjust it if necessary according to the manufacturer’s guidelines.

      Step 5: Examine Water-Lubrication Components:

      Closely inspect the various components of the water-lubrication system, including the water pump, distribution lines, lubrication points, and seals. Look for signs of wear, damage, or misalignment that may be contributing to the problem. Tighten loose connections and replace any damaged or worn-out components as needed.

      Step 6: Check for Air in the System:

      Air trapped within the water-lubrication system can affect its performance. Bleed the system to remove any trapped air. Follow the manufacturer’s instructions for bleeding air from the system, which typically involves opening specific valves or vents until a steady flow of water is achieved.

      Step 7: Inspect Cooling Mechanisms:

      Water-lubrication systems often incorporate cooling mechanisms, such as heat exchangers or radiators, to dissipate excess heat. Inspect these cooling components for blockages, corrosion, or leaks that may be compromising their effectiveness. Clean or repair the cooling mechanisms as necessary to ensure proper heat dissipation.

      Step 8: Consult Manufacturer Documentation:

      If the troubleshooting steps above do not resolve the problem, refer to the manufacturer’s documentation, such as the user manual or technical specifications. These resources may provide specific troubleshooting guidelines, diagnostics, or additional maintenance procedures for the water-lubrication system.

      Step 9: Seek Professional Assistance:

      If the problem persists or if the troubleshooting steps are beyond your expertise, it is advisable to seek professional assistance. Contact the manufacturer’s technical support or consult a qualified technician with experience in water-lubrication systems. They can provide expert guidance and assistance in resolving complex issues.

      By following these troubleshooting steps, you can effectively identify and address common problems encountered in water-lubrication systems, ensuring optimal performance and reliability.

      air compressor

      Are There Any Downsides to Using Water-Lubricated Air Compressors?

      While water-lubricated air compressors offer several advantages, there are also some downsides to consider when using this type of compressor. Here are a few potential drawbacks associated with water-lubricated air compressors:

      1. Water quality requirements: Water-lubricated compressors are highly dependent on the quality of the water used for lubrication. The water should be free from contaminants, minerals, and impurities that can affect the compressor’s performance or cause corrosion. Ensuring the consistent availability of high-quality water may require additional filtration or treatment processes, which can add complexity and cost to the system.
      2. Increased maintenance: Compared to oil-lubricated compressors, water-lubricated models may require more frequent maintenance. Regular checks, cleaning, and monitoring of the water system are necessary to prevent blockages, maintain proper water flow, and ensure the cleanliness of the compressor. This increased maintenance requirement can result in higher operational costs and more downtime for maintenance activities.
      3. Potential for corrosion: While water itself is not corrosive, certain water conditions, such as high mineral content or low pH levels, can promote corrosion within the compressor system. Corrosion can lead to component damage, reduced efficiency, and the need for repairs or replacements. Implementing corrosion prevention measures, such as water treatment or the use of corrosion-resistant materials, may be necessary to mitigate this risk.
      4. Compatibility limitations: Water-lubricated compressors may have limitations when it comes to compatibility with certain materials or gases. For example, in applications where the compressed air comes into contact with sensitive materials or requires specific gas purity, the use of water as a lubricant may not be suitable. In such cases, alternative lubrication methods or compressor types may be more appropriate.
      5. Environmental considerations: While water is generally considered environmentally friendly, the disposal of used water from the compressor system may require proper wastewater management. Depending on local regulations and requirements, additional steps may be needed to ensure compliant and environmentally responsible disposal of the water used for lubrication.

      Despite these potential downsides, water-lubricated air compressors continue to be used in various industries and applications due to their specific advantages and suitability for certain environments. It is important to carefully evaluate the specific requirements, operating conditions, and maintenance considerations of a given application to determine whether a water-lubricated compressor is the most suitable choice.

      China Good quality CHINAMFG Oil and Oil Free Air Compressor Copper Wire Portable Movable Piston Oilless Silent Oil Free 1HP 2HP 3HP 9L 24L 25L 30L 40L 50L 100L Air Compressor   with Great qualityChina Good quality CHINAMFG Oil and Oil Free Air Compressor Copper Wire Portable Movable Piston Oilless Silent Oil Free 1HP 2HP 3HP 9L 24L 25L 30L 40L 50L 100L Air Compressor   with Great quality
      editor by CX 2024-02-14

      China Good quality 30kw 40HP Hot Sale Oil Free Screw Air Compressor Direct Driven Rotary Industrial High Performance portable air compressor

      Product Description

                           High Quality Screw Air compressor 

       

      Our company specialize in making various kinds of compressors, such as:Diaphragm compressor,Piston compressor, screw Air compressor,Nitrogen generator,Oxygen generator ,Gas cylinder,etc. All products can be customized according to your parameters and other requirements

      The CHINAMFG is a volume -type gas compression machine with a volume of work volume. The compression of the gas is achieved by changes in volume, and the change of the volume is to achieve a rotation movement in the case with a pair of rotor of the compressor.
      Basic structure of the screw air compressor: In the body of the compressor, a pair of intertwined spiral rotors are parallel. Usually, there is a rotor with convex teeth outside the ball, which is called yang rotor or yang screw. The rotor with concave teeth in the festival is called a pussy rotor or yin screw. Generally, the yang rotor is connected to the original motivation. Axial force. The cylindrical roller bearing at both ends of the rotor enables the rotor to achieve radial positioning and is underneath the radial force in the compressor. At both ends of the compressor body, a certain shape and size of the pores are opened respectively. One is used for inhalation, which is called the air intake; the other is used for exhaust, called the exhaust port.

      Customized is accepted , Pls provide the following information to us :
      1.Working Pressure : ____ Bar 
      2.Rated Power : _____ KW/HP
       

      Do you really choose the right Screw compressor?

      About Power Saving

      1. The annual electricity bill for purchasing a 37KW ordinary screw air compressor is
      37KWx24hx365 days x1. 2 (electric fee) xO. 6 (loading)
      Power consumption is as high as 233.3366 million!

      Power saving after switching to permanent magnet variable frequency screw air compressor:
      23. 3366×30% save electric fee 7. 00.98 million!
      Advantages of screw air compressor :
      01.
      Advanced Medium Voltage Dual Stage Mainframe
      1. Two-stage integrated design, oil mist spray cooling is used between stages, which reduces the temperature of the air, and the compression process is close to the most energy-saving isothermal compression. In principle, two-stage compression saves 5%-8% of energy compared to single-machine compression ;
      2. It is suitable for the compression ratio matching of medium voltage, the leakage in the main engine is small, and the volumetric efficiency is high;
      3. The bearing adopts imported heavy-duty bearing, which makes the force of the rotor better; the two-stage rotors are driven by helical gears respectively, so that each stage of the rotor has the best linear speed;
      4. The third-generation asymmetric rotor technology, the tooth surface is processed by the German KAPP rotor grinder, creating a high-precision rotor, which is the first guarantee for the high efficiency and stability of the host.

      02.High efficiency permanent magnet synchronous motor
      1. IP54 protection grade, which is more stable and reliable than IP23 in harsh environment;
      2. Low temperature rise design, higher efficiency, and extended the service life of the motor;
      3. Use ceramic plated bearings to completely eliminate the influence of shaft current on bearings;
      4. It is made of rare earth permanent magnet materials, with large torque and small current during startup and operation;
      5. With reasonable magnetic field design and magnetic density distribution, the working frequency range of energy-saving motors is wider and the operating noise is low;
      6. Cooperating with the operation of the frequency converter, the frequency conversion soft start is realized, which avoids the strong mechanical impact of the machine and equipment when the motor is started at full pressure, and is conducive
      to protecting the mechanical equipment, reducing equipment maintenance and improving the reliability of the equipment.
      03. Special valve group
      1. Intake valve: It adopts a special normally closed butterfly valve for medium voltage, with a non-return function, stable operation, high precision of air volume control, built-in noise reduction design, low cavitation noise and long service life;
      2. Minimum pressure maintenance valve: special valve for medium voltage, high pressure resistance, high temperature resistance, accurate opening pressure, ensuring stable pressure in the barrel, ultra-fast return to seat, strong sealing, ensuring no backflow of gas, low pressure loss and high efficiency ;
      3. Temperature control valve: The unit is equipped with a mixed-flow temperature control valve to ensure that the unit is more convenient to start in a low temperature environment, and to ensure the oil supply of the unit at any time; by controlling the oil supply temperature of the main engine to ensure that the unit is in the best performance state;
      4. Oil cut-off valve: special normally closed valve for medium voltage, controlled by the exhaust pressure of the machine head. When starting up, the valve opens quickly to ensure that the compressor is lubricated and warmed up as soon as possible; when shutting down, the valve prevents oil from being ejected from the intake end.

      4.Advanced and reliable electric control system
      1. Large-size color LCD touch screen, with good man-machine communication interface, touch screen with anti-mistouch and sleep function;
      2. It adopts double frequency conversion system, which is more energy-saving. The frequency converter and the motor are perfectly matched, and the low frequency and high torque can output 180% of the rated torque;
      3. According to the characteristics of medium voltage, a special program is developed, with multiple pressure sensors and multiple temperature sensors, which can comprehensively detect the operating status of the unit, and automatically control the machine status without special care;
      4. Configure the Internet of Things, you can check the operating status of the unit on the mobile phone;
      5. Independent air duct design, suitable for various working conditions.
      5.Silent centrifugal fan
      1. Adopt centrifugal fan, brand-new separate radial cooling fan design, with special cooler, better cooling effect and more energy saving;
      2. Compared with axial flow fans, centrifugal fans have higher wind pressure and lower noise;
      3. Using variable frequency fan control, the oil temperature is constant, prolonging the service life of lubricating oil;
      4. Due to the high wind pressure, the cooler and the filter are less likely to be blocked.
      6..High quality triple filter

      1. The filtration area of the air filter exceeds 150% of the normal requirement, the inlet pressure loss is low, and the energy efficiency is good;2. The oil filter adopts a full-flow built-in pressure-bearing oil filter suitable for medium voltage conditions. The rated processing capacity of the oil filter is 1.3 times the circulating oil volume. The imported filter material and the design scheme of large margin are selected, which has high filtration precision and good durability.
      3. The oil is divided into special customized oil, which is designed and developed for medium-pressure working conditions, with wide applicable pressure range, good separation effect and low operating pressure loss; imported glass fiber material is selected;
      4. The design of the 3 filter positions is reasonable, the maintenance is convenient, and the downtime is reduced.
      High quality and efficient coupling
      1. The coupling is a torsional elastic coupling with a failure protection function, which can effectively damp and reduce the vibration and impact generated during operation;
      2. The elastic body is only under pressure and can bear a larger load, and the drum-shaped teeth of the elastic body can avoid stress concentration.   
      Main Parameter

      Technical parameters of oil-free water-lubricated permanent magnet variable frequency screw compressor
      HYW-G Working pressure Exhaust volume  Power  Noise Air outlet pipe diameter  Net weight Dimensions(mm)
      Water lubricated series bar psig (m3/min) cfm kW hp dB   kg Length Width Height
      HYWV-7G 7 102 0.7-1.2 24.7-42.4 7.5 10 58±3 G1″ 500 1135 800 1000
      8 116 0.6-1.1 21.2-38.8 7.5 10 58±3 G1″ 500 1135 800 1000
      10 145 0.5-0.9 17.7-31.8 7.5 10 58±3 G1″ 500 1135 800 1000
      HYWV-11G 7 102 1.0-1.6 35.3-56.5 11 15 58±3 G1″ 500 1135 800 1000
      8 116 0.9-1.5 31.8-53 11 15 58±3 G1″ 500 1135 800 1000
      10 145 0.7-1.3 24.7-45.9 11 15 58±3 G1″ 500 1135 800 1000
      HYWV-15G 7 102 1.1-2 38.8-71 15 20 60±3 G1″ 550 1400 1000 1200
      8 116 1-1.9 35.4-67.3 15 20 60±3 G1″ 550 1400 1000 1200
      10 145 / / 15 20 60±3 G1″ 550 1400 1000 1200
      HYWV-15G 7 102 / / 15 20 60±3 G1″ 550 1170 900 1100
      8 116 / / 15 20 60±3 G1″ 550 1170 900 1100
      10 145 0.9-1.6 31.8-56.6 15 20 60±3 G1″ 550 1170 900 1100
      HYWV-18.5G 7 102 1.8-3.1 63.6-109.5 18.5 25 61 ±3 G1″ 600 1400 1000 1200
      8 116 1.6-2.8 56.5-98.9 18.5 25 61 ±3 G1″ 600 1400 1000 1200
      10 145 1.5-2.5 53-88.3 18.5 25 61±3 G1″ 600 1400 1000 1200
      HYWV-22G 7 102 2.2-3.7 77.7-130.7 22 30 61 ±3 G1″ 655 1400 1000 1200
      8 116 2.0-3.4 70.6-120.1 22 30 61 ±3 G1″ 655 1400 1000 1200
      10 145 1.8-3.0 63.6-105.9 22 30 61 ±3 G1″ 655 1400 1000 1200
      HYWV-30G 7 102 3.1-5.2 109.5-183.6 30 40 64±3 G11/2″ 1150 1920 1170 1320
      8 116 2.8-4.7 98.9-166 30 40 64±3 G11/2″ 1150 1920 1170 1320
      10 145 2.5-4.3 88.3-151.9 30 40 64±3 G11/2″ 1150 1920 1170 1320
      HYWV-37G 7 102 3.6-6.1 127.1-215.4 37 50 64±3 G11/2″ 1200 1920 1170 1320
      8 116 3.3-5.6 116.5-197.8 37 50 64±3 G11/2″ 1200 1920 1170 1320
      10 145 3.0-5.0 105.9-176.6 37 50 64±3 G11/2″ 1200 1920 1170 1320
      HYWV-45G 7 102 4.5-7.5 158.9-264.9 45 60 66±3 G11/2″ 1320 1920 1170 1320
      8 116 4.0-6.8 141.3-240.1 45 60 66±3 G11/2″ 1320 1920 1170 1320
      10 145 3.6-6.0 127.1-211.9 45 60 66±3 G11/2″ 1320 1920 1170 1320
      HYWV-55G 7 102 6.0-10.0 211.9-353.1 55 75 66±3 DN50 1520 1930 1320 1535
      8 116 5.4-9.0 191-317.8 55 75 66±3 DN50 1520 1930 1320 1535
      10 145 4.6-7.8 162.4-275.5 55 75 66±3 DN50 1520 1930 1320 1535
      HYWV-75G  7 102 7.8-13.0 275.5-459.1 75 100 70±3 DN50 1620 1930 1320 1535
      8 116 7.2-12.0 254.3-423.8 75 100 70±3 DN50 1620 1930 1320 1535
      10 145 6.0-10.0 211.9-353.1 75 100 70±3 DN50 1620 1930 1320 1535
      HYWV-90G 7 102 9.3-15.5 328.4-547.4 90 120 70±3 DN50 1800 1930 1320 1535
      8 116 8.4-14.0 296.6-494.4 90 120 70±3 DN50 1800 1930 1320 1535
      10 145 7.5-12.5 264.9-414 90 120 70±3 DN50 1800 1930 1320 1535
      HYWV-110G 7 102 12.0-20.0 423.8-706.3 110 150 72±3 DN80 3100 2300 1600 1750
      8 116 10.8-18.0 381.4-635.7 110 150 72±3 DN80 3100 2300 1600 1750
      10 145 9.6-16.0 339-565 110 150 72±3 DN80 3100 2300 1600 1750
      HYWV-132G 7 102 15.0-25.0 527.9-882.9 132 175 72±3 DN80 3250 2300 1600 1750
      8 116 13.8-23.0 487.3-812.2 132 175 72±3 DN80 3250 2300 1600 1750
      10 145 12.0-20.0 423.8-706.3 132 175 72±3 DN80 3250 2300 1600 1750
      HYWV-160G 7 102 16.2-27.0 572.1-953.5 160 215 72±3 DN100 4500 2860 1600 1800
      8 116 15.3-25.5 540.3-900.5 160 215 72±3 DN100 4500 2860 1600 1800
      10 145 14.4-24.0 508.5-847.6 160 215 72±3 DN100 4500 2860 1600 1800
      HYWV-185G 7 102 18.0-30.0 635.7-1059.4 185 250 74±3 DN100 4500 2860 1600 1800
      8 116 16.8-28.0 593.3-988.8 185 250 74±3 DN100 4500 2860 1600 1800
      10 145 15.0-25.0 529.7-882.9 185 250 74±3 DN100 4500 2860 1600 1800
      HYWV-200G 7 102 21.6-36.0 762.8-1271.3 200 270 74±3 DN125 4800 3150 1850 2050
      8 116 19.8-33.0 699.2-1165.4 200 270 74±3 DN125 4800 3150 1850 2050
      10 145 16.2-27.0 572.1-953.5 200 270 74±3 DN125 4800 3150 1850 2050
      HYWV-250G 7 102 25.8-43.0 911.1-1518.5 250 350 74±3 DN125 5200 3150 1850 2050
      8 116 24.6-41.0 868.7-1447.9 250 350 74±3 DN125 5200 3150 1850 2050
      10 145 22.8-38.0 805.2-1342 250 350 74±3 DN125 5200 3150 1850 2050

       

       

      Workshop of natural gas compressor 
      Our products 
      Our Certificate : CE and ISO certification
      Our exhibition for the gas compressor 
      Our Service for diaphragm compressor : 
      1.Service time : 24*7 Hours
      2.Customized Service 
      3.Perfect pre-sale,sale,after-sales service
      4.FAT
      5.Onsite commissioning Service
      6.18 months warranty period

      FAQ :
      Q1.How about your after-sales service?
      A: 1. Provide customers with intallation and commissioning online instructions.
      2. Well-trained engineers available to overseas after-sales service.

      Q2.What’s payment term?
      A: T/T, L/C, D/P, Western Union, Trade Assurance and etc. Also we could accept USD, RMB, GBP, Euro and other currency.

      Q3 : How long is your air compressor warranty?
      A: Usually 1 year /12 Months for whole compressor machine, 2years/24months for air end (except maintenance spare parts.). And we can provide further warranty if necessary. /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      After-sales Service: 18 Months
      Warranty: 18 Months
      Lubrication Style: Oil-free
      Customization:
      Available

      |

      .shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}

      Shipping Cost:

      Estimated freight per unit.







      about shipping cost and estimated delivery time.
      Payment Method:







       

      Initial Payment



      Full Payment
      Currency: US$
      Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

      air compressor

      What Industries Commonly Use Water-Lubricated Air Compressors?

      Water-lubricated air compressors find applications in various industries where specific operating conditions or regulatory requirements make them a preferred choice. Here are some industries that commonly utilize water-lubricated air compressors:

      • Food and Beverage: Water-lubricated compressors are often used in the food and beverage industry due to their ability to provide clean, oil-free compressed air. Compressed air is widely used in food processing and packaging applications, such as pneumatic conveying, product mixing, bottle blowing, and food packaging. Water-lubricated compressors help maintain product purity, prevent oil contamination, and comply with stringent food safety standards.
      • Pharmaceutical and Healthcare: The pharmaceutical and healthcare industries have strict requirements for compressed air quality, especially in applications where compressed air comes into direct contact with pharmaceutical products or is used in critical medical equipment. Water-lubricated compressors offer a viable solution by providing lubrication without the risk of oil contamination. They are commonly used for processes such as air agitation, medical device manufacturing, and laboratory applications.
      • Electronics and Semiconductors: In electronics and semiconductor manufacturing, where sensitive components and cleanroom environments are involved, oil-free compressed air is essential. Water-lubricated compressors can provide the required level of air purity without introducing oil particles or vapors that could contaminate the electronics or semiconductor production processes. They are used in applications such as chip manufacturing, circuit board assembly, and cleanroom air supply.
      • Textile and Garment: Water-lubricated compressors are utilized in the textile and garment industry, where the presence of oil can negatively impact the quality and appearance of fabrics or garments. Compressed air is widely used in textile machinery for tasks such as spinning, weaving, and air jet looms. Water-lubricated compressors ensure oil-free air supply, preventing oil stains or contamination that could affect the final textile or garment products.
      • Environmental and Wastewater Treatment: Water-lubricated compressors are also employed in environmental and wastewater treatment applications. These compressors help supply air for aeration processes in wastewater treatment plants, where air is introduced into the treatment tanks to facilitate the growth of beneficial bacteria for biological treatment. Water-lubricated compressors provide oil-free compressed air, ensuring the purity and effectiveness of the treatment process.

      While the industries mentioned above commonly use water-lubricated air compressors, it is important to note that these compressors may also find applications in other sectors where oil-free, contamination-free compressed air is required for specific processes or environmental considerations.

      air compressor

      How Do You Troubleshoot Common Problems with Water-Lubrication Systems?

      When encountering common problems with water-lubrication systems, it is essential to follow a systematic troubleshooting approach. Here’s a detailed explanation of the steps involved in troubleshooting common issues with water-lubrication systems:

      Step 1: Identify the Problem:

      The first step is to identify the specific problem or symptom that is affecting the water-lubrication system. Common problems may include inadequate lubrication, water leaks, abnormal noises, or reduced system performance. Understanding the specific issue will help in determining the appropriate troubleshooting steps.

      Step 2: Check Water Supply:

      Verify that there is a proper water supply to the system. Ensure that the water source is connected and flowing adequately. Check for any obstructions or restrictions in the water lines that may be affecting the water flow to the lubrication system.

      Step 3: Inspect Water Filters and Strainers:

      Water filters and strainers are used in water-lubrication systems to remove debris and impurities from the water. Inspect these filters and strainers for clogs or blockages that may be hindering the water flow. Clean or replace the filters as necessary to ensure proper water filtration.

      Step 4: Verify Water Pressure:

      Check the water pressure within the system to ensure it falls within the recommended range. Low water pressure can result in inadequate lubrication, while high water pressure can cause leaks or damage to the system. Use a pressure gauge to measure the water pressure and adjust it if necessary according to the manufacturer’s guidelines.

      Step 5: Examine Water-Lubrication Components:

      Closely inspect the various components of the water-lubrication system, including the water pump, distribution lines, lubrication points, and seals. Look for signs of wear, damage, or misalignment that may be contributing to the problem. Tighten loose connections and replace any damaged or worn-out components as needed.

      Step 6: Check for Air in the System:

      Air trapped within the water-lubrication system can affect its performance. Bleed the system to remove any trapped air. Follow the manufacturer’s instructions for bleeding air from the system, which typically involves opening specific valves or vents until a steady flow of water is achieved.

      Step 7: Inspect Cooling Mechanisms:

      Water-lubrication systems often incorporate cooling mechanisms, such as heat exchangers or radiators, to dissipate excess heat. Inspect these cooling components for blockages, corrosion, or leaks that may be compromising their effectiveness. Clean or repair the cooling mechanisms as necessary to ensure proper heat dissipation.

      Step 8: Consult Manufacturer Documentation:

      If the troubleshooting steps above do not resolve the problem, refer to the manufacturer’s documentation, such as the user manual or technical specifications. These resources may provide specific troubleshooting guidelines, diagnostics, or additional maintenance procedures for the water-lubrication system.

      Step 9: Seek Professional Assistance:

      If the problem persists or if the troubleshooting steps are beyond your expertise, it is advisable to seek professional assistance. Contact the manufacturer’s technical support or consult a qualified technician with experience in water-lubrication systems. They can provide expert guidance and assistance in resolving complex issues.

      By following these troubleshooting steps, you can effectively identify and address common problems encountered in water-lubrication systems, ensuring optimal performance and reliability.

      air compressor

      What Maintenance Is Required for Water-Lubricated Air Compressors?

      Maintaining water-lubricated air compressors involves several key maintenance tasks to ensure their optimal performance and longevity. Here are the maintenance requirements typically associated with water-lubricated air compressors:

      1. Regular water quality checks: It is essential to monitor the quality of the water used for lubrication in the compressor. Regular water analysis helps identify any potential contaminants, such as minerals or impurities, that may affect compressor performance or lead to corrosion. If necessary, appropriate water treatment measures should be taken to maintain the desired water quality.
      2. Drain and flush water systems: Periodically draining and flushing the water systems of the compressor helps remove any sediment, debris, or accumulated contaminants. This prevents blockages, maintains water flow, and ensures the cleanliness of the system.
      3. Inspect and clean filters: Filters in the water system, such as intake filters or water separation filters, should be inspected regularly and cleaned or replaced as needed. Clean filters help maintain proper water flow, prevent clogging, and protect internal components from damage or corrosion.
      4. Check for leaks: Regularly inspect the compressor system for any signs of water leaks. Leaks can lead to water loss, reduced lubrication performance, and potential damage to the compressor components. Any identified leaks should be promptly repaired to maintain the integrity of the system.
      5. Monitor and maintain proper water levels: Ensure that the water levels in the compressor are maintained within the recommended range. Low water levels can result in inadequate lubrication and increased friction, while high water levels may lead to excessive moisture in the system. Regularly check and adjust the water levels as necessary.
      6. Inspect and maintain cooling systems: Water-lubricated compressors often utilize water for cooling purposes. Inspect and maintain the cooling systems, such as heat exchangers or radiators, to ensure proper heat dissipation. Clean any accumulated debris or deposits that may impede cooling efficiency.
      7. Follow manufacturer guidelines: It is crucial to follow the manufacturer’s maintenance guidelines and recommendations specific to the water-lubricated air compressor model being used. These guidelines may include additional maintenance tasks or intervals that are necessary for optimal performance and warranty compliance.

      Regular and proactive maintenance of water-lubricated air compressors helps ensure their reliable operation, extends their lifespan, and minimizes the risk of performance issues or component failures. It is advisable to consult the compressor’s documentation and seek guidance from the manufacturer or a qualified technician to establish a comprehensive maintenance routine specific to the equipment.

      China Good quality 30kw 40HP Hot Sale Oil Free Screw Air Compressor Direct Driven Rotary Industrial High Performance   portable air compressorChina Good quality 30kw 40HP Hot Sale Oil Free Screw Air Compressor Direct Driven Rotary Industrial High Performance   portable air compressor
      editor by CX 2024-02-13

      China Good quality 30kw 40HP Hot Sale Oil Free Screw Air Compressor Direct Driven Rotary Industrial High Performance air compressor CHINAMFG freight

      Product Description

                           High Quality Screw Air compressor 

       

      Our company specialize in making various kinds of compressors, such as:Diaphragm compressor,Piston compressor, screw Air compressor,Nitrogen generator,Oxygen generator ,Gas cylinder,etc. All products can be customized according to your parameters and other requirements

      The CHINAMFG is a volume -type gas compression machine with a volume of work volume. The compression of the gas is achieved by changes in volume, and the change of the volume is to achieve a rotation movement in the case with a pair of rotor of the compressor.
      Basic structure of the screw air compressor: In the body of the compressor, a pair of intertwined spiral rotors are parallel. Usually, there is a rotor with convex teeth outside the ball, which is called yang rotor or yang screw. The rotor with concave teeth in the festival is called a pussy rotor or yin screw. Generally, the yang rotor is connected to the original motivation. Axial force. The cylindrical roller bearing at both ends of the rotor enables the rotor to achieve radial positioning and is underneath the radial force in the compressor. At both ends of the compressor body, a certain shape and size of the pores are opened respectively. One is used for inhalation, which is called the air intake; the other is used for exhaust, called the exhaust port.

      Customized is accepted , Pls provide the following information to us :
      1.Working Pressure : ____ Bar 
      2.Rated Power : _____ KW/HP
       

      Do you really choose the right Screw compressor?

      About Power Saving

      1. The annual electricity bill for purchasing a 37KW ordinary screw air compressor is
      37KWx24hx365 days x1. 2 (electric fee) xO. 6 (loading)
      Power consumption is as high as 233.3366 million!

      Power saving after switching to permanent magnet variable frequency screw air compressor:
      23. 3366×30% save electric fee 7. 00.98 million!
      Advantages of screw air compressor :
      01.
      Advanced Medium Voltage Dual Stage Mainframe
      1. Two-stage integrated design, oil mist spray cooling is used between stages, which reduces the temperature of the air, and the compression process is close to the most energy-saving isothermal compression. In principle, two-stage compression saves 5%-8% of energy compared to single-machine compression ;
      2. It is suitable for the compression ratio matching of medium voltage, the leakage in the main engine is small, and the volumetric efficiency is high;
      3. The bearing adopts imported heavy-duty bearing, which makes the force of the rotor better; the two-stage rotors are driven by helical gears respectively, so that each stage of the rotor has the best linear speed;
      4. The third-generation asymmetric rotor technology, the tooth surface is processed by the German KAPP rotor grinder, creating a high-precision rotor, which is the first guarantee for the high efficiency and stability of the host.

      02.High efficiency permanent magnet synchronous motor
      1. IP54 protection grade, which is more stable and reliable than IP23 in harsh environment;
      2. Low temperature rise design, higher efficiency, and extended the service life of the motor;
      3. Use ceramic plated bearings to completely eliminate the influence of shaft current on bearings;
      4. It is made of rare earth permanent magnet materials, with large torque and small current during startup and operation;
      5. With reasonable magnetic field design and magnetic density distribution, the working frequency range of energy-saving motors is wider and the operating noise is low;
      6. Cooperating with the operation of the frequency converter, the frequency conversion soft start is realized, which avoids the strong mechanical impact of the machine and equipment when the motor is started at full pressure, and is conducive
      to protecting the mechanical equipment, reducing equipment maintenance and improving the reliability of the equipment.
      03. Special valve group
      1. Intake valve: It adopts a special normally closed butterfly valve for medium voltage, with a non-return function, stable operation, high precision of air volume control, built-in noise reduction design, low cavitation noise and long service life;
      2. Minimum pressure maintenance valve: special valve for medium voltage, high pressure resistance, high temperature resistance, accurate opening pressure, ensuring stable pressure in the barrel, ultra-fast return to seat, strong sealing, ensuring no backflow of gas, low pressure loss and high efficiency ;
      3. Temperature control valve: The unit is equipped with a mixed-flow temperature control valve to ensure that the unit is more convenient to start in a low temperature environment, and to ensure the oil supply of the unit at any time; by controlling the oil supply temperature of the main engine to ensure that the unit is in the best performance state;
      4. Oil cut-off valve: special normally closed valve for medium voltage, controlled by the exhaust pressure of the machine head. When starting up, the valve opens quickly to ensure that the compressor is lubricated and warmed up as soon as possible; when shutting down, the valve prevents oil from being ejected from the intake end.

      4.Advanced and reliable electric control system
      1. Large-size color LCD touch screen, with good man-machine communication interface, touch screen with anti-mistouch and sleep function;
      2. It adopts double frequency conversion system, which is more energy-saving. The frequency converter and the motor are perfectly matched, and the low frequency and high torque can output 180% of the rated torque;
      3. According to the characteristics of medium voltage, a special program is developed, with multiple pressure sensors and multiple temperature sensors, which can comprehensively detect the operating status of the unit, and automatically control the machine status without special care;
      4. Configure the Internet of Things, you can check the operating status of the unit on the mobile phone;
      5. Independent air duct design, suitable for various working conditions.
      5.Silent centrifugal fan
      1. Adopt centrifugal fan, brand-new separate radial cooling fan design, with special cooler, better cooling effect and more energy saving;
      2. Compared with axial flow fans, centrifugal fans have higher wind pressure and lower noise;
      3. Using variable frequency fan control, the oil temperature is constant, prolonging the service life of lubricating oil;
      4. Due to the high wind pressure, the cooler and the filter are less likely to be blocked.
      6..High quality triple filter

      1. The filtration area of the air filter exceeds 150% of the normal requirement, the inlet pressure loss is low, and the energy efficiency is good;2. The oil filter adopts a full-flow built-in pressure-bearing oil filter suitable for medium voltage conditions. The rated processing capacity of the oil filter is 1.3 times the circulating oil volume. The imported filter material and the design scheme of large margin are selected, which has high filtration precision and good durability.
      3. The oil is divided into special customized oil, which is designed and developed for medium-pressure working conditions, with wide applicable pressure range, good separation effect and low operating pressure loss; imported glass fiber material is selected;
      4. The design of the 3 filter positions is reasonable, the maintenance is convenient, and the downtime is reduced.
      High quality and efficient coupling
      1. The coupling is a torsional elastic coupling with a failure protection function, which can effectively damp and reduce the vibration and impact generated during operation;
      2. The elastic body is only under pressure and can bear a larger load, and the drum-shaped teeth of the elastic body can avoid stress concentration.   
      Main Parameter

      Technical parameters of oil-free water-lubricated permanent magnet variable frequency screw compressor
      HYW-G Working pressure Exhaust volume  Power  Noise Air outlet pipe diameter  Net weight Dimensions(mm)
      Water lubricated series bar psig (m3/min) cfm kW hp dB   kg Length Width Height
      HYWV-7G 7 102 0.7-1.2 24.7-42.4 7.5 10 58±3 G1″ 500 1135 800 1000
      8 116 0.6-1.1 21.2-38.8 7.5 10 58±3 G1″ 500 1135 800 1000
      10 145 0.5-0.9 17.7-31.8 7.5 10 58±3 G1″ 500 1135 800 1000
      HYWV-11G 7 102 1.0-1.6 35.3-56.5 11 15 58±3 G1″ 500 1135 800 1000
      8 116 0.9-1.5 31.8-53 11 15 58±3 G1″ 500 1135 800 1000
      10 145 0.7-1.3 24.7-45.9 11 15 58±3 G1″ 500 1135 800 1000
      HYWV-15G 7 102 1.1-2 38.8-71 15 20 60±3 G1″ 550 1400 1000 1200
      8 116 1-1.9 35.4-67.3 15 20 60±3 G1″ 550 1400 1000 1200
      10 145 / / 15 20 60±3 G1″ 550 1400 1000 1200
      HYWV-15G 7 102 / / 15 20 60±3 G1″ 550 1170 900 1100
      8 116 / / 15 20 60±3 G1″ 550 1170 900 1100
      10 145 0.9-1.6 31.8-56.6 15 20 60±3 G1″ 550 1170 900 1100
      HYWV-18.5G 7 102 1.8-3.1 63.6-109.5 18.5 25 61 ±3 G1″ 600 1400 1000 1200
      8 116 1.6-2.8 56.5-98.9 18.5 25 61 ±3 G1″ 600 1400 1000 1200
      10 145 1.5-2.5 53-88.3 18.5 25 61±3 G1″ 600 1400 1000 1200
      HYWV-22G 7 102 2.2-3.7 77.7-130.7 22 30 61 ±3 G1″ 655 1400 1000 1200
      8 116 2.0-3.4 70.6-120.1 22 30 61 ±3 G1″ 655 1400 1000 1200
      10 145 1.8-3.0 63.6-105.9 22 30 61 ±3 G1″ 655 1400 1000 1200
      HYWV-30G 7 102 3.1-5.2 109.5-183.6 30 40 64±3 G11/2″ 1150 1920 1170 1320
      8 116 2.8-4.7 98.9-166 30 40 64±3 G11/2″ 1150 1920 1170 1320
      10 145 2.5-4.3 88.3-151.9 30 40 64±3 G11/2″ 1150 1920 1170 1320
      HYWV-37G 7 102 3.6-6.1 127.1-215.4 37 50 64±3 G11/2″ 1200 1920 1170 1320
      8 116 3.3-5.6 116.5-197.8 37 50 64±3 G11/2″ 1200 1920 1170 1320
      10 145 3.0-5.0 105.9-176.6 37 50 64±3 G11/2″ 1200 1920 1170 1320
      HYWV-45G 7 102 4.5-7.5 158.9-264.9 45 60 66±3 G11/2″ 1320 1920 1170 1320
      8 116 4.0-6.8 141.3-240.1 45 60 66±3 G11/2″ 1320 1920 1170 1320
      10 145 3.6-6.0 127.1-211.9 45 60 66±3 G11/2″ 1320 1920 1170 1320
      HYWV-55G 7 102 6.0-10.0 211.9-353.1 55 75 66±3 DN50 1520 1930 1320 1535
      8 116 5.4-9.0 191-317.8 55 75 66±3 DN50 1520 1930 1320 1535
      10 145 4.6-7.8 162.4-275.5 55 75 66±3 DN50 1520 1930 1320 1535
      HYWV-75G  7 102 7.8-13.0 275.5-459.1 75 100 70±3 DN50 1620 1930 1320 1535
      8 116 7.2-12.0 254.3-423.8 75 100 70±3 DN50 1620 1930 1320 1535
      10 145 6.0-10.0 211.9-353.1 75 100 70±3 DN50 1620 1930 1320 1535
      HYWV-90G 7 102 9.3-15.5 328.4-547.4 90 120 70±3 DN50 1800 1930 1320 1535
      8 116 8.4-14.0 296.6-494.4 90 120 70±3 DN50 1800 1930 1320 1535
      10 145 7.5-12.5 264.9-414 90 120 70±3 DN50 1800 1930 1320 1535
      HYWV-110G 7 102 12.0-20.0 423.8-706.3 110 150 72±3 DN80 3100 2300 1600 1750
      8 116 10.8-18.0 381.4-635.7 110 150 72±3 DN80 3100 2300 1600 1750
      10 145 9.6-16.0 339-565 110 150 72±3 DN80 3100 2300 1600 1750
      HYWV-132G 7 102 15.0-25.0 527.9-882.9 132 175 72±3 DN80 3250 2300 1600 1750
      8 116 13.8-23.0 487.3-812.2 132 175 72±3 DN80 3250 2300 1600 1750
      10 145 12.0-20.0 423.8-706.3 132 175 72±3 DN80 3250 2300 1600 1750
      HYWV-160G 7 102 16.2-27.0 572.1-953.5 160 215 72±3 DN100 4500 2860 1600 1800
      8 116 15.3-25.5 540.3-900.5 160 215 72±3 DN100 4500 2860 1600 1800
      10 145 14.4-24.0 508.5-847.6 160 215 72±3 DN100 4500 2860 1600 1800
      HYWV-185G 7 102 18.0-30.0 635.7-1059.4 185 250 74±3 DN100 4500 2860 1600 1800
      8 116 16.8-28.0 593.3-988.8 185 250 74±3 DN100 4500 2860 1600 1800
      10 145 15.0-25.0 529.7-882.9 185 250 74±3 DN100 4500 2860 1600 1800
      HYWV-200G 7 102 21.6-36.0 762.8-1271.3 200 270 74±3 DN125 4800 3150 1850 2050
      8 116 19.8-33.0 699.2-1165.4 200 270 74±3 DN125 4800 3150 1850 2050
      10 145 16.2-27.0 572.1-953.5 200 270 74±3 DN125 4800 3150 1850 2050
      HYWV-250G 7 102 25.8-43.0 911.1-1518.5 250 350 74±3 DN125 5200 3150 1850 2050
      8 116 24.6-41.0 868.7-1447.9 250 350 74±3 DN125 5200 3150 1850 2050
      10 145 22.8-38.0 805.2-1342 250 350 74±3 DN125 5200 3150 1850 2050

       

       

      Workshop of natural gas compressor 
      Our products 
      Our Certificate : CE and ISO certification
      Our exhibition for the gas compressor 
      Our Service for diaphragm compressor : 
      1.Service time : 24*7 Hours
      2.Customized Service 
      3.Perfect pre-sale,sale,after-sales service
      4.FAT
      5.Onsite commissioning Service
      6.18 months warranty period

      FAQ :
      Q1.How about your after-sales service?
      A: 1. Provide customers with intallation and commissioning online instructions.
      2. Well-trained engineers available to overseas after-sales service.

      Q2.What’s payment term?
      A: T/T, L/C, D/P, Western Union, Trade Assurance and etc. Also we could accept USD, RMB, GBP, Euro and other currency.

      Q3 : How long is your air compressor warranty?
      A: Usually 1 year /12 Months for whole compressor machine, 2years/24months for air end (except maintenance spare parts.). And we can provide further warranty if necessary. /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

      After-sales Service: 18 Months
      Warranty: 18 Months
      Lubrication Style: Oil-free
      Customization:
      Available

      |

      .shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}

      Shipping Cost:

      Estimated freight per unit.







      about shipping cost and estimated delivery time.
      Payment Method:







       

      Initial Payment



      Full Payment
      Currency: US$
      Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

      air compressor

      Are There Specific Water Treatment Requirements for Water-Lubricated Compressors?

      Water-lubricated compressors often have specific water treatment requirements to ensure optimal performance, prevent equipment damage, and maintain the desired water quality. Here’s a detailed explanation of the water treatment considerations for water-lubricated compressors:

      Water Quality:

      • Purity: The water used for lubrication should be clean and free from impurities, contaminants, or excessive minerals. Impurities in the water can lead to corrosion, blockages, and reduced lubrication effectiveness. Water sources should be evaluated to ensure they meet the required purity standards.
      • Chemical Composition: The chemical composition of the water should be within acceptable limits to avoid any adverse reactions with compressor components or lubricants. Certain water characteristics, such as pH, alkalinity, hardness, and conductivity, need to be monitored and controlled to prevent issues like scaling, fouling, or chemical reactions.

      Water Treatment Methods:

      • Filtration: Filtration systems are commonly used to remove particulate matter, sediment, or debris from the water. Filters can range from simple strainers to more advanced filtration systems, depending on the specific water quality requirements and the level of filtration needed.
      • Water Softening: If the water has high levels of hardness minerals, such as calcium and magnesium, water softening methods may be necessary. Water softeners use ion exchange or other processes to remove the hardness minerals, which can help prevent scaling and reduce the risk of deposits in the compressor system.
      • Reverse Osmosis (RO): Reverse osmosis is a water treatment method that uses a semi-permeable membrane to remove dissolved solids, ions, and impurities from the water. RO systems can effectively reduce the total dissolved solids (TDS) and improve the overall water quality, making it suitable for water-lubricated compressors.
      • Chemical Treatment: In some cases, chemical treatments may be required to control water chemistry parameters, such as pH or alkalinity. Chemical additives can be used to adjust or stabilize water chemistry within the desired range, preventing corrosion, scaling, or other issues.

      Water treatment requirements for water-lubricated compressors can vary depending on factors such as the compressor design, operating conditions, water source quality, and specific application requirements. It is essential to consult the compressor manufacturer’s recommendations and guidelines regarding water treatment. The manufacturer’s guidelines will provide specific information on water quality limits, treatment methods, and any required maintenance procedures related to water treatment.

      Regular monitoring of water quality, including periodic testing and analysis, is recommended to ensure that the water treatment measures are effective and the desired water quality is maintained. Water treatment systems should be properly maintained and periodically serviced to ensure their optimal performance and prevent any potential issues that could affect the operation and longevity of water-lubricated compressors.

      air compressor

      What Are the Considerations for Choosing Water-Lubricated vs. Oil-Lubricated Compressors?

      When selecting between water-lubricated and oil-lubricated compressors, several considerations come into play. Here’s a detailed explanation of the key factors to consider when choosing between these two types:

      Operating Environment:

      • Water Sensitivity: Water-lubricated compressors are well-suited for environments where water is readily available and can be easily supplied to the compressor system. On the other hand, oil-lubricated compressors are more suitable for applications where water is not readily available or where water contamination could pose a problem.
      • Cleanliness Requirements: If the application demands a high level of cleanliness, such as in certain manufacturing processes or cleanroom environments, water-lubricated compressors may be preferred. Water is inherently cleaner than oil and reduces the risk of oil contamination in sensitive operations.

      Maintenance and Service:

      • Lubricant Replacement: Oil-lubricated compressors require regular oil changes and maintenance to ensure proper lubrication and performance. Water-lubricated compressors, on the other hand, eliminate the need for oil changes and associated maintenance tasks, simplifying the maintenance requirements.
      • Oil Contamination: Oil-lubricated compressors carry the risk of oil contamination in the compressed air system. This can be a concern in certain applications where oil contamination can negatively impact product quality or downstream equipment. Water-lubricated compressors reduce the risk of oil contamination, making them advantageous in such applications.

      Environmental Impact:

      • Oil Disposal: Oil-lubricated compressors generate used oil that requires proper disposal in accordance with environmental regulations. Water-lubricated compressors eliminate the need for oil disposal, contributing to a reduced environmental impact.
      • Energy Efficiency: In terms of energy efficiency, water-lubricated compressors tend to have an advantage. Water has a higher specific heat capacity than oil, meaning it can absorb and dissipate heat more effectively. This can result in improved cooling efficiency and potentially lower energy consumption compared to oil-lubricated compressors.

      Application-Specific Factors:

      • Operating Pressure: Water-lubricated compressors are generally suitable for lower to moderate operating pressures. Oil-lubricated compressors, on the other hand, can handle higher operating pressures, making them more appropriate for applications that require higher pressure levels.
      • Temperature Sensitivity: Water-lubricated compressors may have limitations in applications where low temperatures are encountered. Water freezing or becoming slushy can cause operational issues. Oil-lubricated compressors, with appropriate low-temperature oil formulations, can better handle such temperature-sensitive conditions.

      Cost Considerations:

      • Initial Cost: Water-lubricated compressors generally have a lower initial cost compared to oil-lubricated compressors. This cost advantage can be attractive for applications with budget constraints.
      • Maintenance Cost: Over the long term, water-lubricated compressors may have lower maintenance costs due to the elimination of oil changes and associated maintenance tasks. However, it’s important to consider the specific maintenance requirements and costs associated with each type of compressor.

      By considering these factors, including the operating environment, maintenance and service requirements, environmental impact, application-specific factors, and cost considerations, one can make an informed decision when choosing between water-lubricated and oil-lubricated compressors.

      air compressor

      Are There Any Downsides to Using Water-Lubricated Air Compressors?

      While water-lubricated air compressors offer several advantages, there are also some downsides to consider when using this type of compressor. Here are a few potential drawbacks associated with water-lubricated air compressors:

      1. Water quality requirements: Water-lubricated compressors are highly dependent on the quality of the water used for lubrication. The water should be free from contaminants, minerals, and impurities that can affect the compressor’s performance or cause corrosion. Ensuring the consistent availability of high-quality water may require additional filtration or treatment processes, which can add complexity and cost to the system.
      2. Increased maintenance: Compared to oil-lubricated compressors, water-lubricated models may require more frequent maintenance. Regular checks, cleaning, and monitoring of the water system are necessary to prevent blockages, maintain proper water flow, and ensure the cleanliness of the compressor. This increased maintenance requirement can result in higher operational costs and more downtime for maintenance activities.
      3. Potential for corrosion: While water itself is not corrosive, certain water conditions, such as high mineral content or low pH levels, can promote corrosion within the compressor system. Corrosion can lead to component damage, reduced efficiency, and the need for repairs or replacements. Implementing corrosion prevention measures, such as water treatment or the use of corrosion-resistant materials, may be necessary to mitigate this risk.
      4. Compatibility limitations: Water-lubricated compressors may have limitations when it comes to compatibility with certain materials or gases. For example, in applications where the compressed air comes into contact with sensitive materials or requires specific gas purity, the use of water as a lubricant may not be suitable. In such cases, alternative lubrication methods or compressor types may be more appropriate.
      5. Environmental considerations: While water is generally considered environmentally friendly, the disposal of used water from the compressor system may require proper wastewater management. Depending on local regulations and requirements, additional steps may be needed to ensure compliant and environmentally responsible disposal of the water used for lubrication.

      Despite these potential downsides, water-lubricated air compressors continue to be used in various industries and applications due to their specific advantages and suitability for certain environments. It is important to carefully evaluate the specific requirements, operating conditions, and maintenance considerations of a given application to determine whether a water-lubricated compressor is the most suitable choice.

      China Good quality 30kw 40HP Hot Sale Oil Free Screw Air Compressor Direct Driven Rotary Industrial High Performance   air compressor CHINAMFG freightChina Good quality 30kw 40HP Hot Sale Oil Free Screw Air Compressor Direct Driven Rotary Industrial High Performance   air compressor CHINAMFG freight
      editor by CX 2024-02-12