When the air booster pump is working, the first step is to apply a very small force to the inside of the pump. When the piston inside the pump is subjected to the force, a high pressure will be generated. Through the directional valve at the inlet, the booster pump can continuously move, and then a control valve controls the high-pressure piston to continuously discharge water. When the pressure equilibrium is reached between the main drive system and the liquid system, the booster pump can stop working, otherwise the booster pump will continue to work. This is the working law of the air booster pump.
In fact, this working method is very similar to a liquid booster. Firstly, it fills the pump body with liquid, and then uses the rapid rotation of the internal fan blades to drive the flow of liquid in the pump body. Due to inertia, the liquid will flow towards the edge of the fan blades. At the same time, the fan blades continuously suck in liquid from the inlet. In this process, the liquid on the fan blades constantly surrounds the blades. During the surrounding motion, water will generate a force on the fan blades, and in turn, the fan blades will return a pressure of the same force but different directions to the liquid. This force does work on the water, allowing it to continuously receive energy and flow into the pump body.
The working mode of air booster pumps mostly utilizes the law of pressure imbalance or interaction force to achieve the effect of repeated pump movement. The gas driven components are mostly made of aluminum alloy, and the liquid driven components are also mostly made of stainless steel material, ensuring the long-term use of air pumps
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