首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >A general elastohydrodynamic lubrication analysis of artificial hip joints employing a compliant layered socket under steady state rotation
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A general elastohydrodynamic lubrication analysis of artificial hip joints employing a compliant layered socket under steady state rotation

机译:在稳态旋转下采用顺应性分层承窝的人工髋关节的一般弹性流体动力润滑分析

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摘要

A general numerical methodology was developed in the present study to analyse the elastohydrodynamic lubrication problem of a compliant layered socket against a rigid ball under steady state rotation representing flexion and extension during walking, with particular reference to artificial hip joint replacements. The general numerical methodology consisted of using the Newton-Raphson method to solve the Reynolds equation, simultaneously with the full elasticity equation using the finite element method in combination with the fast Fourier transform technique. Two specific types of acetabular cup were considered, one with ultra-high molecular weight polyethylene used in current total hip joint replacements, and one with polyurethane proposed for compliant layered 'cushion form bearings' for future developments. The film thickness and the pressure distribution for both cups were obtained under a wide range of operating conditions. The predicted central or average film thicknesses within the contact conjunction were compared with those estimated from various simplified theories available in the literature. A simple analytical methodology was consequently established to estimate the lubricating film thickness in a compliant layered socket, based on the corresponding ball-on-plane model and the consideration of the curvature effect.
机译:在本研究中开发了一种通用的数值方法,以分析在稳态旋转下顺应性分层承窝相对于刚性球的弹性流体动力润滑问题,代表在行走过程中的弯曲和伸展,尤其是人工髋关节置换。通用数值方法包括使用牛顿-拉夫森法求解雷诺方程,同时使用有限元方法结合快速傅立叶变换技术求解全弹性方程。考虑了两种特定类型的髋臼杯,一种在目前的全髋关节置换中使用超高分子量聚乙烯,另一种在未来发展中建议使用聚氨酯作为顺应性分层“垫形轴承”。在宽范围的操作条件下获得了两个杯子的膜厚和压力分布。将接触接头内的预测中心或平均膜厚与文献中各种简化理论估算的厚度进行了比较。因此建立了一种简单的分析方法,以基于相应的平面模型和对曲率效应的考虑,来估算顺应性分层插座中的润滑膜厚度。

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