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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Transient elastohydrodynamic lubrication analysis of ultra-high molecular weight polyethylene hip joint replacements
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Transient elastohydrodynamic lubrication analysis of ultra-high molecular weight polyethylene hip joint replacements

机译:超高分子量聚乙烯髋关节置换物的瞬态弹性流体动力润滑分析

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摘要

The cyclic variation in both the load and speed experienced during walking was considered in an elastohydrodynamic lubrication (EHL) analysis for artificial hip joint replacements in this study. A general numerical procedure was developed to take both the entraining and squeeze-film actions into the solution of the Reynolds equation in the spherical ball-in-socket coordinate, simultaneously with the elasticity equation, using the Newton-Raphson method. The numerical procedure developed was then applied to an example of hip joint replacements employing an ultra-high molecular weight polyethylene (UHMWPE) acetabular cup against either a metallic or ceramic femoral head under simplified cyclic load and speed conditions. The predicted minimum film thickness was found to stay remarkably constant, despite a large change in the angular velocity and the load. This was attributed to the combined effect of entraining and squeeze-film actions in generating, replenishing and maintaining the lubricating film in artificial hip joint replacements. Furthermore, it was pointed out that the average transient minimum film thickness predicted throughout one cycle was very close to that under quasi-static conditions based upon the average angular velocity and load.
机译:在这项研究中,对于人工髋关节置换物的弹性流体动力润滑(EHL)分析考虑了行走过程中负荷和速度的周期性变化。使用牛顿-拉夫森方法,开发了一种通用的数值程序,将夹带作用和挤压膜作用同时纳入球窝球坐标中的雷诺方程和弹性方程的解中。然后将开发的数值程序应用于髋关节置换的示例,该髋关节置换采用超高分子量聚乙烯(UHMWPE)髋臼杯,在简化的循环载荷和速度条件下,对金属或陶瓷股骨头进行置换。尽管角速度和负载发生了很大的变化,但预测的最小膜厚度仍显着保持恒定。这归因于在人工髋关节置换中夹带和挤压膜作用在产生,补充和维持润滑膜中的综合作用。此外,据指出,基于平均角速度和负载,在一个周期内预测的平均瞬时最小膜厚度非常接近在准静态条件下的平均最小膜厚度。

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