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Hydrodynamic analysis of rough curved pivoted porous slider bearings with couple stress fluid

机译:耦合应力流体对粗糙弯曲枢轴多孔滑动轴承的流体力学分析

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The purpose of this paper is to study the effect of surface roughness on the performance of curved pivoted porous slider bearings lubricated with couple stress fluid. The modified B-J slip boundary condition is utilised at the porous/fluid film interface to derive the Reynolds type equation for the problem under consideration. To mathematically model the surface roughness due to non-uniform rubbing of bearing surfaces, a stochastic random variable with non-zero mean, variance and skewness is considered. The closed form solution is obtained for the averaged Reynolds equation, and the compact expressions for the mean fluid film pressure mean load carrying capacity, frictional force and the centre of pressure are obtained. The numerical computations of the results show the improved performance due to the couplestresses and the presence of negatively skewed surface roughness. However, the presence of porous facing and positively skewed surface roughness affects the performance of the pivoted porous slider bearing.
机译:本文的目的是研究表面粗糙度对用耦合应力流体润滑的弯曲枢轴多孔滑动轴承的性能的影响。修改后的B-J滑移边界条件在多孔/流体膜界面处被利用,以得出针对所考虑问题的雷诺型方程。为了对由于轴承表面不均匀摩擦而引起的表面粗糙度进行数学建模,考虑了具有非零均值,方差和偏度的随机随机变量。对于平均的雷诺方程,获得了封闭形式的解,并获得了平均流体膜压力,平均载荷能力,摩擦力和压力中心的紧凑表达式。结果的数值计算表明,由于耦合应力和存在负偏斜的表面粗糙度,因此性能得到了改善。但是,多孔面和正偏表面粗糙度的存在会影响枢轴式多孔滑动轴承的性能。

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