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Numerical prediction of slip flow effect on gas-lubricated journal bearings for MEMS/MST-based micro-rotating machinery

机译:基于MEMS / MST的微旋转机械的气润滑轴颈轴承滑流效应的数值预测

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摘要

The fluid dynamics of gas-lubricated journal bearings in micro-rotating machinery is different from those of larger size. One point to be considered is a slip flow effect. In this paper, the slip flow effect is considered in order to estimate load-carrying capacity and dynamic coefficients of micro gas-lubricated journal bearings. Based on a modified compressible Reynolds equation including slip flow effect, the first slip approximation was applied. To extract dynamic coefficients, the linearized dynamic equations were formulated by the perturbation method. Numerical predictions compared the static and dynamic characteristics considering slip flow at room-to-high temperature in a range of bearing numbers. The results including load-carrying capacity and dynamic coefficients demonstrate that the slip flow effect becomes significant with temperature increase as well as in the lower range of bearing numbers.
机译:微旋转机械中的气体润滑轴颈轴承的流体动力学与较大尺寸的流体动力学不同。要考虑的一点是滑流效应。在本文中,考虑滑流效应以估算微型气体润滑轴颈轴承的承载能力和动态系数。基于包含滑流效应的改进的可压缩雷诺方程,应用了第一滑移近似。为了提取动力系数,通过摄动法建立了线性化动力方程。数值预测比较了在一定轴承数量范围内从室温到高温的滑流时的静态和动态特性。包括承载能力和动态系数在内的结果表明,滑移效应随着温度的升高以及轴承数量的较低范围而变得显着。

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