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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology >Micropolar fluid squeeze film lubrication of short partial porous journal bearings
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Micropolar fluid squeeze film lubrication of short partial porous journal bearings

机译:短局部多孔轴颈轴承的微极性流体挤压膜润滑

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摘要

On the basis of Eringen's micropolar fluid theory, a theoretical analysis of hydrodynamic squeeze film behaviour for short partial porous journal bearings lubricated by micropolar fluids is presented in this article. To take into account the micropolar effects because of the lubricant containing additives or suspended particles in a short partial porous journal bearing, the modified Reynolds equation governing the film pressure is derived. Expressions for the squeeze film pressure and load-carrying capacity are obtained. The first-order non-linear equation for the time-height relation is solved numerically by using the Runge–Kutta method. From the results obtained, it is observed that, the effect of micropolar fluid is to increase the load-carrying capacity and to lengthen the squeeze film time as compared to the corresponding Newtonian case. The effect of permeability is to reduce the load-carrying capacity and the squeeze film time as compared to the corresponding solid case.
机译:本文基于Eringen的微极性流体理论,对用微极性流体润滑的短局部多孔轴颈轴承的流体动力挤压膜行为进行了理论分析。考虑到由于润滑剂在短的局部多孔轴颈轴承中包含添加剂或悬浮颗粒而产生的微极性效应,推导了控制薄膜压力的修正雷诺方程。得到挤压膜压力和承载能力的表达式。时间-高度关系的一阶非线性方程是使用Runge-Kutta方法数值求解的。从所获得的结果可以看出,与相应的牛顿情况相比,微极性流体的作用是增加了承载能力并延长了挤压膜的时间。与相应的固体箱相比,渗透性的作用是减小了承载能力和挤压膜的时间。

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