Combined Effect of Slip Velocity and Surface Roughness on a Magnetic Squeeze Film for a Sphere in a Spherical Seat

G. Deheri, Sejal J. Patel
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引用次数: 2

Abstract

This investigation analyzes the performance of a magnetic fluid based squeeze film for a sphere in a rough spherical seat with slip velocity. The slip model of Beavers and Joseph has been deployed to study the effect of velocity slip while the stochastic model of Christensen and Tonder has been used to calculate the effect of surface roughness. The concerned statistically averaged Reynolds’ type equation is solved to derive the pressure distribution which results in the calculation of load carrying capacity. The results presented in graphical forms confirm that the adverse effect of slip velocity can be overcome to a large extent at least in the case of negatively skewed roughness. However, lower values of slip may be preferred for enhancing the performance characteristics of the bearing system. Besides, variance (−ve) provides a little support to improve the performance characteristics.
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滑移速度和表面粗糙度对球座内球体磁挤压膜的综合影响
研究了一种基于磁流体的挤压膜在具有滑移速度的粗糙球座中的性能。采用Beavers and Joseph的滑移模型来研究速度滑移的影响,采用Christensen and Tonder的随机模型来计算表面粗糙度的影响。求解相关的统计平均雷诺型方程,导出压力分布,从而计算承载能力。以图形形式给出的结果证实,滑移速度的不利影响可以在很大程度上克服,至少在负偏斜粗糙度的情况下。然而,为了提高轴承系统的性能特性,较低的滑移值可能是首选的。此外,方差(- ve)为改进性能特性提供了一点支持。
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