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The Cushioning Groove for Solenoid Switching Valves –

机译:电磁换向阀的缓冲槽–

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A proper cushioning of the spool and armature of a switching valve at the end stops is important for a high lifetime and a low impact sound. Squeeze gap concepts are often employed. Oil between two basically parallel surfaces, which come into contact and which form the mechanical end stop, provides an excellent damping mechanism. But this oil film may exhibit high stiction forces, which cause a high response delay or even a total failure of the valve, unless cavitation in the oil film limits the stiction force. A new cushioning concept based on a notched groove is presented in this paper. Its basic functional principle is studied by compact mathematical models. The basic differences to squeeze gap cushioning are worked out and basic dimensioning rules are derived. This concept overcomes the stiction force problem fully.
机译:末端止挡处的切换阀的阀芯和电枢的适当缓冲对于延长使用寿命和降低撞击声很重要。经常使用挤压间隙概念。两个基本平行的表面之间的油接触并形成机械端部挡块,提供了出色的阻尼机制。但是,除非油膜中的气蚀限制了静摩擦力,否则该油膜可能会表现出较高的静摩擦力,从而导致较高的响应延迟,甚至会导致阀门完全失效。本文提出了一种基于凹槽的新型缓震概念。通过紧凑的数学模型研究了其基本功能原理。找出了挤压间隙缓冲的基本区别,并推导了基本尺寸规则。这个概念完全克服了静力问题。

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