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Elasto-hydrodynamic Analysis of Human Artificial Hip Joint Prostheses

机译:人体人工髋关节假体的弹性流体动力学分析

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摘要

Hip joint is one of the most important human joints that should be fully understood. The present research work aims at improving the tribological performance of the human artificial hip joint prostheses to help in producing reliable ones using design charts. An elasto-hydrodynamic model of the hip joint is proposed and numerical solution of the governing equations using finite difference technique is used to predict the elasto-hydrodynamic behavior of such joint. Parametric study has been conducted and results have shown that, thicker cup gives better tribological performance and the increase in the femoral head radius results in decreasing the non-dimensional maximum pressure and decreasing the non-dimensional minimum film thickness. Also, increasing the angular velocity doesn't affect the tribological behavior considerably.
机译:髋关节是应被充分理解的最重要的人类关节之一。本研究工作旨在改善人类人工髋关节假体的摩擦学性能,以帮助使用设计图表生产可靠的假体。提出了髋关节的弹性流体力学模型,并应用有限差分技术对控制方程进行数值求解,以预测该关节的弹性流体力学行为。进行了参数研究,结果表明,较厚的杯罩具有更好的摩擦学性能,而股骨头半径的增加导致无量纲最大压力的减小和无量纲最小膜厚度的减小。同样,增加角速度不会显着影响摩擦性能。

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