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Equations of motion of spool valves with eccentric clearance

机译:带偏心清除的阀芯阀门运动方程

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Equations of motion of spool valves have been established under very ideal conditions. In this paper, some important factors are brought into considerations. One of them is the eccentric clearance existing between the valve spool and the sleeve due to fabrication errors. Another is the viscosity of a Newtonian fluid assumed to flow through the valve, which generally results in shear forces acting on the valve spool. Under these conditions, equations of motion of the spool valves are derived. Concepts of Poiseuille flow and Couette flow are used to obtain axial forces acting on the valve spool. The resulting equations of motion of spool valves have the simple form of a second order linear homogeneous ordinary differential equation under the imposed idealizations. The influence of these factors on the motion characteristics of spool valves are in turn discussed.
机译:在非常理想的条件下建立了线轴阀的运动方程。在本文中,提出了一些重要因素。其中一个是由于制造误差导致的阀芯和套管之间存在的偏心间隙。另一个是假设流过阀门的牛顿流体的粘度,这通常导致作用在阀芯上的剪切力。在这些条件下,推导出阀芯阀的运动方程。 Poiseuille流量和Couette流的概念用于获得作用在阀芯上的轴向力。由此产生的阀芯阀运动方程具有在施加的理想化下的二阶线性均匀常规方程的简单形式。讨论了这些因素对阀芯阀的运动特性的影响又讨论。

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