流体静压导轨静态特性的流固耦合研究

Zhiwei Wang, Wanhua Zhao, Bingqiang Li, Jun Zhang, B. Lu
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引用次数: 6

摘要

在以往的大多数研究中,流体静压导轨被认为是刚性的,没有变形。然而,由于液膜压力引起的滑道变形会影响液膜厚度和压力分布。本文建立了带环隙节流器的静压导轨流固耦合模型。采用有限元法对模型进行求解。研究了导轨变形对导轨刚度、流量特性、压力比和膜厚的影响。上导轨的变形降低了静压导轨的刚度,增加了所需的流量。刚度、体积流量和变形量随供气压力呈线性变化。压力比与节流长度之间存在非线性关系。α值越大,获得的刚度越大,体积流量越小。适当增加上滑道的厚度可以减小变形的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fluid-structure interactions (FSI) on static characteristics of hydrostatic guideways
In most previous studies, hydrostatic guideways are considered as rigid without deformations. However, the deformations of slideway due to fluid film pressure affect the fluid film thickness and the pressure distribution. In this paper a fluid-structure interaction (FSI) model of hydrostatic guideways with annular gap restrictor is established. The model is solved by the finite element method (FEM). The influence of the slideway deformations on the stiffness, the flow characteristic, the pressure ratio and the film thickness are investigated. The deformations of the upper slideway decrease the stiffness of the hydrostatic guideways and increase the required flow rate. The stiffness, the volume flow rate and the deformations are linearly changed with the supply pressure. The relationship between pressure ratio and throttling length is nonlinear. The large value of αcan attain high stiffness and decrease the volume flow rate. An appropriate increase in the thickness of the upper slideway can reduce the influences of the deformations.
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