What is the principle of gas booster pump? How to choose correctly?

    Usually, factories may encounter insufficient air pressure and require pressurization to meet equipment requirements (such as gas assisted injection molding, valve testing, top needle hot runner, etc.), in which case gas pressurization equipment is needed. At present, domestic turbocharging equipment is divided into electric turbocharging equipment and pneumatic turbocharging equipment, each with its own advantages and disadvantages. Below is an explanation of pneumatic turbocharging equipment.


    The principle of a gas booster pump is very simple, and it is difficult to make a good product without further ado. First, let me introduce the structure of a gas booster pump, and you will understand its principle. A pneumatic booster pump is divided into two main parts: a driving cylinder and a booster cylinder. The two cylinder bodies are independently separated and do not affect the purity of the gas. Pneumatic driving definitely involves the piston moving back and forth. Low pressure driving gas drives the large piston to move back and forth, generating power to drive the small piston of the booster cylinder to move and squeeze the gas inside the booster cylinder. A one-way valve is connected to the inlet and outlet of the pressurized gas to prevent the backflow of the pressurized gas, completing the gas boosting process.


    How to choose this correctly? This involves several elements such as flow rate, pressure level, and pressure stability. When combined with the on-site situation of the user, contacting a sales engineer is the correct choice.

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