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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Elastohydrodynamic lubrication of a circular point contact for a compliant layered surface bonded to a rigid substrate Part 2: numerical results
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Elastohydrodynamic lubrication of a circular point contact for a compliant layered surface bonded to a rigid substrate Part 2: numerical results

机译:圆点接触的弹性流体动力润滑,用于粘合到刚性基材的顺应性分层表面第2部分:数值结果

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Both the theoretical formulation and the numerical analysis of the elastohydrodynamic lubrication problem of a circular point contact of a compliant layered surface firmly bonded to a rigid substrate have been present in the earlier paper, Part 1. The numerical method is applied, in this paper, to a compliant layered surface firmly bonded to a rigid substrate. The results of the film thickness and pressure distribution are presented for a wide range of ratios of the contact radius to the layer thickness and Poisson's ratio. It has been shown that the film thickness for a layered surface can be predicted from the semi-infinite solid assumption when the ratio of the contact radius to the layer thickness is less than or equal to 0.25. Furthermore, it has been demonstrated that, for a layered surface with Poisson's ratio equal to 0.4, the elastohydrodynamic solutions based on the simple constrained column model are reasonably accurate when the contact radius is larger than or equal to the layer thickness. General non-dimensional solutions of the minimum and central film thicknesses have been presented using the Moes load and film thickness parameters as a function of the ratio of the contact radius to the layer thickness and Poisson's ratio. All the numerical solutions of both the central and the minimum (along the centre of contact in the entraining direction) film thicknesses have been curve fitted using a least-squares technique. A normal human hip joint has been chosen as an example to illustrate the application of the present study.
机译:在较早的论文第1部分中,已经提出了牢固结合到刚性基材上的顺应性分层表面的圆点接触的弹性流体动力润滑问题的理论公式和数值分析。在本文中应用了数值方法,牢固地粘合到刚性基材上的顺应性分层表面。对于接触半径与层厚度之比和泊松比的较宽范围,给出了膜厚和压力分布的结果。已经表明,当接触半径与层厚度之比小于或等于0.25时,可以根据半无限固体假设来预测层状表面的膜厚度。此外,已经证明,对于具有泊松比等于0.4的层状表面,当接触半径大于或等于层厚度时,基于简单约束柱模型的弹性流体力学解是相当准确的。最小和中心膜厚度的一般无量纲解决方案已使用Moes载荷和膜厚度参数作为接触半径与层厚度之比和泊松比的函数提出。中心和最小(沿夹带方向的接触中心)膜厚的所有数值解均已使用最小二乘法进行了曲线拟合。以正常人的髋关节为例来说明本研究的应用。

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