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當前位置:首頁 - 新聞中心 - 常見問題氣體增壓泵和氣液增壓缸有

氣體增壓泵和氣液增壓缸有什么不同?

發(fā)布時間:2023-11-20 17:12:16   發(fā)布人:http://www.dtgl.com.cn

一氣體增壓泵和氣液增壓缸之工作原理不同

The working principles of a gas booster pump and a gas-liquid booster cylinder are different

氣體增壓泵工作原理:這種以壓縮空氣為動力源的活塞式增壓泵,當進氣時增壓氣控閥的閥芯往復切換工作,控制增壓閥活塞以極快的速度作往復動作,隨著輸出壓力增大,活塞往復速度減慢直到停止。此時,增壓閥輸出壓力達到恒定,能量消耗達到低,各部件停止工作;而且無論由于什么原因?qū)е卤夯芈穳毫ο陆担鰤洪y都會自動啟動,補充泄漏壓力,保持回路壓力恒定。

Working principle of gas booster pump: This piston type booster pump uses compressed air as the power source. When the air is fed, the valve core of the booster gas control valve switches back and forth, controlling the booster valve piston to reciprocate at an extremely fast speed. As the output pressure increases, the reciprocating speed of the piston slows down until it stops. At this point, the output pressure of the booster valve reaches a constant level, the energy consumption reaches low, and all components stop working; And regardless of the reason for the pressure drop in the pressure maintaining circuit, the boost valve will automatically start to supplement the leakage pressure and maintain a constant circuit pressure.

氣液增壓缸工作原理:氣液增壓缸是將一油壓缸與增壓器作一體式相結(jié)合,利用增壓器的大小不同受壓截面面積之比,以及帕斯卡能源守衡原理而工作。因為壓力不變,當受壓面積由大變小時,則壓強也會隨大小不同而變化的原理,從而達到將氣壓壓力提高到數(shù)十倍的壓力效果,以預壓式增壓缸為例:當工作氣壓壓在液壓油(或活塞)表面時,液壓油會壓縮空氣作用而流向預壓行程腔,此時液壓油會迅速推動式件作位移,當工作位移遇到阻力大于氣壓壓力時缸則停止動作,此時,增壓缸的增壓腔因為電信號(或氣動信號)動作,開始增壓從而達到成型產(chǎn)品的目的。

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Working principle of gas-liquid booster cylinder: The gas-liquid booster cylinder is a combination of an oil pressure cylinder and a turbocharger, utilizing the ratio of different compression cross-sectional areas of the turbocharger and the Pascal energy conservation principle to work. Because the pressure remains constant, when the pressure area changes from large to small, the pressure will also change with different sizes, achieving the pressure effect of increasing the air pressure to tens of times. For example, with a pre compressed booster cylinder, when the working air pressure is pressed on the surface of the hydraulic oil (or piston), the hydraulic oil will compress the air and flow to the pre compressed stroke chamber. At this time, the hydraulic oil will quickly push the component to move, When the working displacement encounters resistance greater than the air pressure, the cylinder stops acting. At this time, the boosting chamber of the boosting cylinder starts to pressurize due to electrical signals (or pneumatic signals) to achieve the purpose of forming the product.

二氣體增壓泵和氣液增壓缸之產(chǎn)品分類不同

The product classification of two gas booster pumps and gas-liquid booster cylinders is different

氣體增壓泵主要分為單頭單作用泵,雙頭單作用泵及雙頭雙作用泵,倍數(shù)有51015254060100倍不等,介質(zhì)有空氣氮氣氫氣氧氣及特殊氣體。

Gas booster pumps are mainly divided into single head single acting pumps, double head single acting pumps, and double head double acting pumps, with multiples ranging from 51015254060100 times. The medium includes air, nitrogen, hydrogen, oxygen, and special gases.

氣液增壓缸主要分為直壓式和預壓式的,具體可分為標準型,水平安裝型,預壓可調(diào)型,增壓可調(diào)型,預壓增壓均可調(diào)型,快速型,迷你型,并列式,倒裝型的等等。

Gas-liquid turbocharged cylinders are mainly divided into direct pressure and pre pressure types, which can be divided into standard type, horizontal installation type, pre pressure adjustable type, pre pressure adjustable type, pre pressure adjustable type, fast type, mini type, parallel type, inverted type, and so on. 

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