空氣增壓泵工作時候，要先對泵內施加一個很小的作用力，當泵內的活塞受到作用力后會生成—個高壓 ，通過入氣孔處的換向閥 ，增壓泵就可以不斷的運動，再由一個控制閥控制高壓活塞連續的將水排出。當主要的驅動系統和液體系統之間達到氣壓的均衡時，增壓泵就能停止工作，反之增壓泵就會繼續工作，這就是空氣增壓泵的工作規律。
When the air Booster pump is working, a small force should be applied to the pump first. When the piston in the pump receives the force, a high pressure will be generated. Through the reversing valve at the air inlet, the Booster pump can move continuously, and then a control valve controls the high-pressure piston to discharge water continuously. When the air pressure between the main drive system and the liquid system is balanced, the Booster pump can stop working, otherwise the Booster pump will continue to work, which is the working law of the air Booster pump.
In fact, this working method is very similar to a liquid booster, which fills the pump body with liquid and then uses the rapid rotation of the internal fan blades to drive the liquid flow in the pump body. Due to inertia, the liquid flows to the edge of the fan blades, and the fan blades continuously suck in liquid from the inlet. In this process, the liquid on the fan blades continuously surrounds the blades, and during the surrounding movement, water will generate force to the fan blades, In turn, the fan blades will return pressure to the liquid with the same force but different directions, which produces work on the water, allowing it to continuously receive energy and flow into the pump body.
The working mode of air Booster pump is mostly to use the imbalance of pressure or the law of interaction force to achieve the effect of repeated movement of the pump. Most of the gas driven parts are made of aluminum alloy, and most of the liquid driven parts are made of stainless steel, which ensures the safety and durability of the air pump in use. The air Booster pump is driven by the low-pressure gas at the piston end of a large area to produce high-pressure gas at the piston end of a small area.
增壓泵不斷的進行往復工作，輸出壓力越大，泵的往復運動速度便會減慢直到停止。泵在此時輸出的壓力恒定 能量消耗達到 ，各部件停止運動?？梢赃M行調節輸入壓力使得輸出壓力得到相應的無級調整。這樣的證明能夠表明空氣增壓泵具有輸出性能高且成本低這一特點。
The Booster pump continuously performs reciprocating work. The higher the output pressure, the slower the reciprocating speed of the pump will be until it stops. At this point, the pump outputs a constant pressure and consumes the lowest energy, causing all components to stop moving. The input pressure can be adjusted to achieve corresponding stepless adjustment of the output pressure. Such proof can show that the air Booster pump has the characteristics of high output performance and low cost.
在工作中，它可以實現將工作系統中的空氣壓力提高至 2-5倍 而實現這一點僅僅需要將工作系統中的壓縮空氣作為氣源。由于局部壓縮空氣壓力不足這一問題困擾了人們很長時間，從而專門針對為解決而設計制造出空氣增壓泵。它的特點在于當達到所設定的壓力時，無需電源，不會額外增加任何能量的消耗。這一點上很大的節省了成本，被多次在需要防爆的領域上使用。
In work, it can increase the air pressure in the working system to 2-5 times, which only requires the compressed air in the working system as the air source. The problem of insufficient local compressed air pressure has puzzled people for a long time, so the air Booster pump is specially designed and manufactured to solve it. Its biggest feature is that when the set pressure is reached, there is no need for power and no additional energy consumption. This greatly saves costs and has been used multiple times in areas that require explosion protection.
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