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Key Parameters for Compressor inquiry

Suction Pressure

Discharge Pressure

Flow Rate

Cooling Method

Suction Temperature (℃)
Discharge Temperature(℃)
Power Supply(V/HZ)
Control Requirements
Gas Medium
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High-Pressure Argon Compressor from China Suppliers - Factory Solutions for 3D Printing and Welding Needs

Discover our advanced technology designed to convert mechanical energy into gas pressure, efficiently compressing argon to high-pressure levels of 200–250 bar. This high-purity, high-pressure shielding gas is essential for a variety of industrial applications including 3D printing, metal welding, photovoltaic manufacturing, argon recovery, and scientific research. As leading suppliers from China, our factory ensures top-quality products to meet the demands of various sectors. Trust our expertise for reliable and efficient argon compression solutions

    Advantages of Argon Diaphragm Compressor
    🛡️
    01 Absolutely Oil-Free and Purity Retention

    The compression chamber (diaphragm cavity) is completely free of lubrication. Argon has zero contact with any grease or oil, ensuring the compressed gas purity can reach over 99.999%. This meets the stringent cleanliness requirements of high-purity applications such as electronics-grade and research-grade uses, preventing product yield reduction or experiment failure caused by oil contamination.

    🔒
    02 Excellent Static Sealing and Leakage Control

    The diaphragm static sealing structure fundamentally prevents external leakage of the process gas. This is critical for preventing the risk of asphyxiation caused by the accumulation of high-density argon in low-lying areas. It also reduces the loss of valuable gas, improving operational safety and economy.

    Key Design Points for Argon Diaphragm Compressor
    🌡️
    01 Targeted Thermal Management

    Given argon's relatively high adiabatic index (k ≈ 1.67), which causes a significant temperature rise during compression, the diaphragm cavity curvature design must be optimized and equipped with an efficient air-cooled or water-cooled system to control the discharge temperature and protect diaphragm life.

    ⚠️
    02 Multiple Safety Monitoring

    A diaphragm rupture alarm device must be installed. In the event of diaphragm failure, it should alarm and interlock to shut down the compressor, preventing oil and gas from mixing. The system integrates safety valves, pressure, and temperature sensors for automatic protection.

    ⚙️
    03 Precise Parameter Matching

    Inlet pressure, outlet pressure (up to 90 MPa), temperature, and flow rate must be clearly defined. The single-stage compression ratio must be precisely calculated to prevent instability caused by excessive temperature rise, ensuring optimal operation.

    Certificates
    Model Selection
    GZ Series
    GZ Model

    Stroke: 70-130mm | Force: 10-30KN
    Pressure: 70Mpa | Flow: 1-500Nm³/h

    GV Series
    GV Model

    Stroke: 70-130mm | Force: 10-30KN
    Pressure: 50Mpa | Flow: 1-200Nm³/h

    GL Series
    GL Model

    Stroke: 110-130mm | Force: 20-40KN
    Pressure: 100Mpa | Flow: 10-1000Nm³/h

    GD Series
    GD Model

    Stroke: 110-210mm | Force: 20-160KN
    Pressure: 100Mpa | Flow: 30-2000Nm³/h

    Model Naming Rules
    G Diaphragm Compressor
    Z Piston stroke 70mm
    20 Flow (Nm³/h)
    5 Inlet pressure (barg)
    25 Outlet pressure (barg)
    Technical Parameters
    No. Model Cooling Water (L/h) Flow (Nm³/h) Inlet (MPa) Outlet (MPa) Dimensions (mm) Weight (kg) Power (kW)
    1 GZ-20/5-25 500 20 0.5 2.5 1400×760×1650 650 4
    2 GZ-12/0.5-8 500 12 0.05 0.8 1500×760×1200 750 4
    3 GZ-20/5-30 500 20 0.5 3 1400×760×1600 650 5.5
    4 GV-5/1-200 1000 5 0.1 20 1520×800×1060 800 5.5
    5 GV-5/200 1000 5 Atmos. 20 1600×780×1080 800 7.5
    6 GV-5/7-350 500 5 0.7 35 1400×845×1100 1000 11
    7 GL-30/10-150 1200 30 1 15 2300×1300×1200 3000 11
    8 GL-45/5-150 2000 45 0.5 15 2600×1300×1300 3000 18.5

    Note: Equipment size and weight are for reference only.

    Case Study
    Russia Case
    RUSSIA
    USA Case
    UNITED STATES
    Spain Case
    SPAIN
    Kazakhstan Case
    KAZAKHSTAN
    Frequently Asked Questions
    Why use a diaphragm compressor for argon gas?
    Argon often requires high purity for industrial and research applications. Diaphragm compressors provide a completely oil-free environment and hermetic sealing, ensuring zero contamination and zero gas leakage.
    How does the system handle the high heat of argon compression?
    Due to argon's high adiabatic index, we use optimized diaphragm cavity designs and efficient water-cooled or air-cooled systems to manage discharge temperatures effectively.
    What happens if a diaphragm ruptures?
    Our compressors are equipped with rupture alarm devices. If a failure occurs, the system immediately triggers an alarm and shuts down to prevent any mixing of oil and process gas.
    What pressure levels can these compressors achieve?
    Depending on the model (such as the GL or GD series), our argon diaphragm compressors can achieve discharge pressures up to 100 MPa.
    Are the wetted parts resistant to corrosion?
    While argon is non-corrosive, we use high-quality 304 or 316L stainless steel for all flow-wetted components to ensure long-term reliability and meet high-purity standards.
    Can the compressor be customized for specific flow rates?
    Yes, we match precise process parameters including inlet/outlet pressure and flow rates (from 1 to 2000 Nm³/h) based on the specific requirements of your application.