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Discharge Pressure

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China Helium Compressor Suppliers - High-Efficiency Factory Solutions for Semiconductor and Cryogenic Applications

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Introducing our Helium Compressor, expertly designed to tackle the unique challenges associated with helium, including its small molecular size and tendency for high leakage. As a leading factory in China, we offer a compressor that features advanced shaft seals and sealing structures, ensuring an exceptionally low leakage rate of just 0.1 mbar×L/s—far superior to standard air compressors, which typically experience leaks of 4-5%. Our optimized, low-speed operation and multi-stage compression design guarantee both high compression efficiency and gas purity. This makes our helium compressor an ideal choice for high-value applications such as semiconductor manufacturing, cryogenic research, and helium recovery systems. Trustworthy suppliers in China, our products provide economical and reliable solutions for all your helium compression needs.

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    Advantages of Helium Diaphragm Compressor
    • 01

      100% Oil-Free and Ultimate Purity Retention

      The diaphragm compressor uses a metal diaphragm to completely physically isolate the hydraulic oil from the compressed gas, achieving absolutely no lubrication in the cylinder. This characteristic ensures that the helium is not contaminated by any oil during compression, maintaining an ultra-high purity of over 99.999%, fully meeting the stringent cleanliness requirements of the semiconductor, scientific research, and medical fields.

    • 02

      Static Seal Zero Leakage and High-Pressure Capability

      The gas is sealed within the chamber formed by the diaphragm and cylinder head, which is a static sealing structure that fundamentally prevents gas leakage. This is crucial for preventing the loss of expensive helium. Simultaneously, this compressor type offers a high single-stage compression ratio, enabling it to achieve discharge pressures up to 50 MPa or even higher with fewer stages, making it highly suitable for high-pressure helium filling and transportation.

    Key Design Points for Helium Diaphragm Compressor
    • 01

      Strictly Control the Single-Stage Compression Ratio and Enhance Cooling

      Given helium's high adiabatic index and significant temperature rise during compression, the design must strictly control the single-stage compression ratio to prevent excessively high discharge temperatures that could affect equipment stability and diaphragm life. An efficient inter-stage cooling and final cooling system (water-cooled or forced air-cooled) must be provided to make the compression process as close to isothermal as possible, effectively controlling the temperature rise.

    • 02

      Use Compatible Materials and High-Cleanliness Treatment

      All flow-wetted components in contact with helium should be made of compatible materials such as high-quality stainless steel (e.g., 304, 316L). During manufacturing and assembly, these components must undergo strict degreasing, cleaning, and drying processes to eliminate any potential sources of contamination and ensure the initial purity of the gas.

    • 03

      Configure Multiple Safety and Purity Monitoring Systems

      A diaphragm rupture monitoring and alarm device must be installed to immediately alarm upon diaphragm failure, preventing oil-gas mixing. The system should be equipped with safety valves at each stage for overpressure protection.

    Certificate
    Model Selection
    GZ
    ModelG70Z/G95Z/G110Z/G130Z Piston Stroke70mm~130mm
    Maximum Piston Force10KN~30KN Maximum Discharge Pressure70Mpa
    Flow Range1~500Nm³/h Motor Power2.2KW~30KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled/Air Cooled
    GV
    ModelG70V/G95V/G130V Piston Stroke70mm~130mm
    Maximum Piston Force10KN~30KN Maximum Discharge Pressure50Mpa
    Flow Range1~200Nm³/h Motor Power2.2KW~30KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled/Air Cooled
    GL
    ModelG110L/G130L Piston Stroke110mm~130mm
    Maximum Piston Force20KN~40KN Maximum Discharge Pressure100Mpa
    Flow Range10~1000Nm³/h Motor Power7.5KW~90KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled/Air Cooled
    GD
    ModelG110D/G130D/G150D/G180D/G182D/G210D Piston Stroke110mm~210mm
    Maximum Piston Force20KN~160KN Maximum Discharge Pressure100Mpa
    Flow Range30~2000Nm³/h Motor Power22KW~200KW
    Crankshaft Speed420rpm Cooling MethodWater-cooled / Air-cooled
    G
    Diaphragm type compressor
    Z
    Piston stroke 70mm
    2
    Flow(Nm3/h)
    3
    Inlet pressure(barg)
    No. Model Cooling water Flow Inlet pressure Outlet pressure Dimensions L×W×H Weight Motor Power
    (L/h) (Nm³/h) (MPa) (MPa) (≈mm) (≈kg) (kW)
    1 GZ-2/3 500 2 Atmospheric 0.3 1200×700×1100 0 2.2
    2 GZ-5/0.5-10 500 5 0.05 1 1400×740×1240 650 2.2
    3 GZ-5/13-200 500 5 1.3 20 1500×760×1200 750 4
    4 GV-8/8-160 500 8 0.8 16 1310×686×580 800 3
    5 GV-10/8-160 500 10 0.8~0.7 16 1200×600×1100 800 4
    6 GV-10/8-220 1000 10 0.8 22 1330×740×1080 800 11
    7 GL-10/160 1000 10 Atmospheric 16 2200×1200×1300 3000 7.5
    8 GL-25/15 1000 25 Atmospheric 1.5 2200×1200×1300 3000 7.5
    9 GL-20/12-160 1000 20 1.2 16 2200×1200×1300 3000 7.5
    10 GD-120/4-80 3000 120 0.4 8 3000×1600×1400 4000 30
    11 GD-130/0.98-11 3000 130 0.098 1.1 3000×1800×1600 4000 30
    12 GD-150/2-20 4000 150 0.2 2 3000×1800×1600 3800 37
    The equipment size and weight are for reference only, and the final design shall prevail.
    Case Study
    Russia
    Russia
    UNITED STATES
    UNITED STATES
    Spain
    Spain
    Kazakhstan
    Kazakhstan
    Frequently Asked Questions
    Q Why is a diaphragm compressor ideal for high-purity helium?
    The metal diaphragm forms a physical block that isolates the hydraulic oil completely from the helium. This ensures 100% oil-free operation, preserving gas purity up to 99.999%, which is critical for semiconductor and medical applications.
    Q How does the compressor prevent helium gas leakage?
    It features a static sealing structure where the helium is securely confined within the chamber created by the diaphragm and the cylinder head. This design eliminates dynamic seal pathways, preventing gas loss.
    Q Why does helium compression require strict temperature control?
    Helium has a high adiabatic index, causing rapid heat generation when compressed. Limiting the single-stage compression ratio and using robust cooling systems keeps the process close to isothermal, protecting the diaphragm from thermal wear.
    Q What materials are used for parts that touch helium?
    All wetted parts are made from helium-compatible materials, such as high-grade 304 or 316L stainless steel. These components undergo strict degreasing, cleaning, and drying during assembly to avoid contamination.
    Q What safety mechanisms are built into the system?
    The compressor is equipped with a diaphragm rupture detection alarm to prevent hydraulic oil from mixing with the helium, and multi-stage safety valves to provide overpressure protection.