It can provide hydraulic power for bolt stretchers, conduct static water pressure testing and destructive testing of products, output and pressurization of fluid pressure, and fill high-pressure medium in reaction vessels of research institutes. In all situations where liquid pressure testing is required, extremely strict pressure testing must be carried out.
氣液增壓泵有如下幾個特點，體積小，輸出壓力高壓，維護方便，氣動增壓類產品，操作極其方便，可以作為水壓測試臺 爆破測試臺 脈沖試驗機等的核心部件-液壓動力。無需用電，工廠的壓縮氣體可以為動力源。
The gas-liquid booster pump has the following characteristics: small size, high output pressure, convenient maintenance, pneumatic booster products, extremely convenient operation, and can be used as the core component of hydraulic power testing equipment, such as hydraulic pressure testing equipment, explosion testing equipment, pulse testing machines, etc. No electricity is required, and the compressed gas in the factory can be used as the power source.
The working principle of a gas-liquid booster pump is to use compressed air as the power source, and the output liquid pressure is proportional to the driving air source pressure. By adjusting the pressure of the driving air source, the corresponding hydraulic pressure can be obtained. When the pressure of the driving air source is balanced with the hydraulic pressure, the pneumatic booster pump stops charging, and the output hydraulic pressure stabilizes at the preset pressure.
The small hole behind the directional valve of the gas booster pump, as well as the small hole next to the drive end, can be understood as a breathing hole. If there are too many impurities or if the pump body is inside, it will cause scratches on the cylinder body and wear on the sealing ring of the gas booster pump. This will shorten the service life of the booster pump and is not conducive to the normal operation of the gas pump.
In addition, the water content at the driving end of the gas booster pump must be strictly controlled. Excessive water content enters the drive cylinder body through the directional valve, which dilutes the internal lubricating grease. Long term working lubricating grease will be discharged into the atmosphere through the silencer. The lack of sealing grease inside the pump body increases the working resistance of the internal piston, increases the wear of the booster seal ring, and is not conducive to the use of the booster engine.
Furthermore, the pressurized medium of the gas booster pump must not contain moisture or impurities. If found, it should be cleaned and maintained in a timely manner. Excessive impurities and moisture inside the gas booster can have a serious impact, such as causing rust and aging on the inner surface of the pneumatic booster, seriously shortening its service life.
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