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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 Factory in China - Leading Suppliers for Industrial Applications

This innovative product transforms mechanical energy into gas pressure, efficiently compressing argon to high-pressure levels of 200–250 bar. It is specifically designed to fulfill the requirements for high-purity, high-pressure shielding gas in various industrial applications, including 3D printing, metal welding, photovoltaic manufacturing, argon recovery, and scientific research. As a leading factory and trusted suppliers in China, we ensure that our products meet the highest standards of quality and performance, providing you with reliable solutions for your industrial needs

    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 and Material Selection

    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, protect diaphragm life, and make the compression process closer to energy-saving isothermal compression. Flow-wetted components are typically made of 304 or 316L stainless steel and undergo strict degreasing and cleaning to meet high-purity standards.

    02

    Multiple Safety Monitoring and Protection

    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 should integrate safety valves, pressure sensors, and temperature sensors at each stage to achieve automatic overpressure and overtemperature protection.

    03

    Precise Process Parameter Matching

    Before design, the inlet pressure, outlet pressure (up to 90 MPa), inlet temperature, and flow rate (Nm³/h or m³/h) must be clearly defined. Based on the specific composition of the argon and process requirements, the single-stage compression ratio must be precisely calculated and controlled to prevent instability caused by excessive temperature rise, ensuring the system operates efficiently at the optimal operating point.

    Certificate

    eac
    ce
    iso
    iso2033
    atex

    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
    20
    Flow (Nm³/h)
    5
    Inlet pressure (barg)
    25
    Outlet 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-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 Atmospheric pressure 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
    9 GL-30/5-160 2000 30 0.5 16 2800×1300×1200 3000 18.5
    10 GD-80/0.3-6 1500 80 0.03 0.6 2800×1600×1500 4000 15
    11 GD-70/0.1-8 2000 70 0.01 0.8 3000×1600×1250 5000 18.5
    12 GD-40/0.02-160 3000 40 0.002 16 2800×1460×1530 3000 22
    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

    FAQ

    Why is an oil-free diaphragm compressor crucial for argon applications? +
    Argon gas is often used in high-purity environments like electronics-grade manufacturing and scientific research. Standard compressors can introduce oil mist or greases into the gas stream. A diaphragm compressor isolates the gas completely in the diaphragm cavity, preventing any contact with lubricants and ensuring gas purity reaches over 99.999%.
    How does the compressor control the high temperatures generated during argon compression? +
    Argon has a high adiabatic index (k ≈ 1.67), which leads to significant temperature rises during compression. To manage this, our compressors utilize optimized diaphragm cavity curvatures and are equipped with high-efficiency water-cooling or air-cooling systems to protect the diaphragm and save energy.
    What safety mechanisms protect against diaphragm rupture? +
    Our systems are equipped with automated diaphragm rupture alarm devices. If a diaphragm fails, the sensor detects it instantly, triggers an alarm, and automatically shuts down the system to prevent any mixing of oil and gas.
    What materials are used for the gas-wetted parts? +
    Although argon is non-corrosive, all flow-wetted components are made of high-grade 304 or 316L stainless steel. These components undergo strict degreasing and clean-room cleaning processes to comply with industry-grade purity requirements.
    How do I choose between the GZ, GV, GL, and GD models? +
    Model selection depends on your process requirements: GZ and GV are ideal for smaller flow ranges (up to 200–500 Nm³/h) and lower motor power, whereas GL and GD models are designed for high-capacity applications (up to 1000–2000 Nm³/h) and higher discharge pressures up to 100 MPa.