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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >On the linear stability analysis of finite-hydrodynamic porous journal bearings under coupled stress lubrication
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On the linear stability analysis of finite-hydrodynamic porous journal bearings under coupled stress lubrication

机译:耦合应力润滑下有限流体动力多孔轴颈轴承的线性稳定性分析

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摘要

The objective of the present investigation is to study theoretically, using the finite-difference techniques, the dynamic performance characteristics of finite-hydrodynamic porous journal bearings lubricated with coupled stress fluids. In the analysis based on the Stokes micro-continuum theory of the rheological effects of coupled stress fluids, a modified form of Reynolds equation governing the transient-state hydrodynamic film pressures in porous journal bearings with the effect of slip flow of coupled stress fluid as lubricant is obtained. Moreover, the tangential velocity slip at the surface of porous bush has been considered by using Beavers-Joseph criterion. Using the first-order perturbation of the modified Reynolds equation, the stability characteristics in terms of threshold stability parameter and whirl ratios are obtained for various parameters viz. permeability factor, slip coefficient, bearing feeding parameter, and eccentricity ratio. The results show that the coupled stress fluid exhibits better stability in comparison with Newtonian fluid.
机译:本研究的目的是使用有限差分技术从理论上研究用耦合应力流体润滑的有限流体动力多孔轴颈轴承的动态性能特征。在基于Stokes微连续谱理论的耦合应力流体的流变学影响的分析中,Reynolds方程的一种修正形式控制了多孔轴颈轴承中瞬态流体动力膜压力,并受耦合应力流体作为润滑剂的滑流的影响获得。此外,已经使用Beavers-Joseph准则考虑了多孔衬套表面的切向速度滑移。使用经修改的雷诺方程的一阶扰动,针对各种参数viz,获得了根据阈值稳定性参数和涡流比的稳定性特性。渗透系数,滑移系数,轴承进给参数和偏心率。结果表明,与牛顿流体相比,耦合应力流体表现出更好的稳定性。

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