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Combined Effect of Rarefaction and Effective Viscosity on Micro-Elasto-Aerodynamic Lubrication Performance of Gas Microbearings

机译:回流和有效粘度对气体微轴承微弹-气动润滑性能的综合影响

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摘要

Elastic deformation and gaseous rarefaction effects are of great importance to the static and dynamic characteristics of gas microbearings. Based on the effective viscosity model of Veijola, the governing equations can be solved by the partial derivative method, finite element procedure, and relaxed iterative algorithm. The numerical results showed that the maximum gas pressure is relatively lower compared to a microbearing with a rigid liner at a local pressure peak region, owing to the film thickness of two converging-diverging profiles and the existence of bimodal pressure inside the elastic microbearing liner. However, the effect of bearing flexibility provides a marginal increase in the load capacity on account of the integral area of pressure distribution is larger than the rigid bearing liner. The friction coefficient and direct stiffness coefficients increase as the elastic modulus decreases while the direct damping coefficients become smaller at high eccentricity ratios and bearing numbers. Since the Poiseuille flow rate increases in connection with an increasing Knudsen number, the effective viscosity of the lubricant leads to a decreased load carrying capacity, friction coefficient, and direct stiffness coefficient, which produces an increase in the direct damping coefficients.
机译:弹性变形和气体稀疏效应对气体微轴承的静态和动态特性非常重要。基于Veijola的有效粘度模型,可以通过偏导数方法,有限元程序和宽松的迭代算法来求解控制方程。数值结果表明,与在局部压力峰值区域具有刚性衬套的微轴承相比,最大气体压力相对较低,这是由于两个会聚-扩散曲线的膜厚以及弹性微轴承衬套内部存在双峰压力。但是,由于压力分布的整体面积大于刚性轴承衬套,因此轴承柔韧性的影响使负载能力略有增加。摩擦系数和直接刚度系数随着弹性模量的降低而增加,而直接阻尼系数在高偏心率和轴承数量下变得更小。由于泊肃叶流速随着克努森数的增加而增加,因此润滑剂的有效粘度导致承载能力,摩擦系数和直接刚度系数的降低,这导致直接阻尼系数的增加。

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