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首页> 外文期刊>Tribology in Industry >Ferrofluid Lubrication of a Rough Porous Hyperbolic Slider Bearing with Slip Velocity
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Ferrofluid Lubrication of a Rough Porous Hyperbolic Slider Bearing with Slip Velocity

机译:滑动速度粗糙的多孔双曲滑块轴承的铁磁润滑

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摘要

An attempt has been made to study and analyze the combined effect of roughness and slip velocity on the performance of a ferrofluid based rough porous hyperbolic slider bearing. Beavers and Joseph’s slip model has been used to evaluate the effect of slip velocity. The stochastic modeling of Christensen and Tonder has been employed to estimate the effect of transverse surface roughness. The associated Reynolds’ type equation is solved with suitable boundary conditions to obtain the pressure distribution leading to the calculation of load carrying capacity. Further, the expressions for friction and position of centre of pressure are obtained. It is observed that the bearing system gets adversely affected by the transverse surface roughness. The slip velocity further enhances this adverse effect. However, the magnetization saves the situation in the case of negatively skewed roughness when variance (-ve) occurs. But for an overall improved performance of the bearing the lower values of slip parameter may be favorable.
机译:已经尝试研究和分析粗糙度和滑动速度对基于铁磁流体的粗糙多孔双曲滑块轴承性能的综合影响。 Beavers和Joseph的滑移模型已用于评估滑移速度的影响。 Christensen和Tonder的随机模型已用于估计横向表面粗糙度的影响。相关的雷诺类型方程式在适当的边界条件下求解,以获得压力分布,从而计算了承载力。此外,获得了摩擦和压力中心位置的表达式。可以看出,轴承系统受到表面粗糙度的不利影响。滑移速度进一步增强了这种不利影响。但是,在出现方差(-ve)时,如果粗糙度出现负偏斜,则磁化可以避免这种情况。但是对于轴承整体性能的改善,滑动参数的较低值可能是有利的。

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