Multiscale Elastohydrodynamic Wedge-Platform Thrust Bearing with Ultra Low Clearance

Mechanics Pub Date : 2024-02-23 DOI:10.5755/j02.mech.34137
Chao Wang, Yongbin Zhang
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Abstract

The effect of the surface elastic deformation is investigated by the multiscale approach in the hydrodynamic wedge-platform thrust bearing with the ultra low clearance on the 1nm scale, by incorporating both the non-continuum pure adsorbed layer flow and the multiscale “sandwich” film flow. The pure adsorbed layer flow in ultra small surface separations is described by the non-continuum nanoscale flow equation; The “sandwich” film flow is described by the multiscale flow equations respectively for the adsorbed layer flow and the intermediate continuum fluid flow. The numerical calculation results show that in the studied bearing, the effect of the surface elastic deformation is normally significant, it pronouncedly reduces the maximum film pressure, greatly changes both the film pressure profile and the surface separation profile, and considerably increases the minimum surface separation, which occurs on the exit of the bearing. The effect of the surface elastic deformation is shown to be obviously dependent on the fluid-bearing surface interaction.
具有超低游隙的多尺度弹性流体力学楔形平台推力轴承
通过非连续纯吸附层流动和多尺度 "三明治 "薄膜流动,采用多尺度方法研究了 1 纳米尺度超小游隙楔形平台推力轴承表面弹性变形的影响。超小表面间隙中的纯吸附层流动由非连续纳米流动方程描述;"三明治 "薄膜流动由多尺度流动方程分别描述吸附层流动和中间连续流体流动。数值计算结果表明,在所研究的轴承中,表面弹性变形的影响通常是显著的,它明显降低了最大膜压,极大地改变了膜压曲线和表面分离曲线,并大大增加了发生在轴承出口处的最小表面分离。表面弹性变形的影响明显取决于流体与轴承表面的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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