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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Analysis of elastohydrodynamic lubrication in McKee-Farrar metal-on-metal hip joint replacement
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Analysis of elastohydrodynamic lubrication in McKee-Farrar metal-on-metal hip joint replacement

机译:McKee-Farrar金属对金属髋关节置换术中的弹性流体动力润滑分析

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An elastohydrodynamic lubrication (EHL) analysis was carried out in this study for a typical McKee-Farrar metal-on-metal hip prosthesis under a simple steady state rotation. The finite element method was used initially to investigate the effect of the cement and bone on the predicted contact pressure distribution between the two articulating surfaces under dry conditions, and subsequently to determine the elastic deformation of both the femoral and the acetabular components required for the lubrication analysis. Both Reynolds equation and the elasticity equation were coupled and solved numerically using the finite difference method. Important features in reducing contact stresses and promoting fluid-film lubrication associated with the McKee-Farrar metal-on-metal hip implant were identified as the large femoral head and the thin acetabular cup. For the typical McKee-Farrar metal-on-metal hip prosthesis considered under typical walking conditions, an increase in the femoral head radius from 14 to 17.4 mm (for a fixed radial clearance of 79μm) was shown to result in a 25 per cent decrease in the maximum dry contact pressure and a 60 per cent increase in the predicted minimum film thickness. Furthermore, the predicted maximum contact pressure considering both the cement and the bone was found to be decreased by about 80 per cent, while the minimum film thickness was predicted to be increased by 50 per cent. Despite a significant increase in the predicted minimum lubricating film thickness due to the large femoral head and the thin acetabular cup, a mixed lubrication regime was predicted for the McKee-Farrar metal-on-metal hip implant under estimated in vivo steady state walking conditions, depending on the surface roughness of the bearing surfaces. This clearly demonstrated the important influences of the material, design and manufacturing parameters on the tribological performance of these hard-on-hard hip prostheses. Furthermore, in the present contact mechanics analysis, the significant increase in the elasticity due to the relatively thin acetabular cup was not found to cause equatorial contact and gripping of the ball.
机译:在此研究中,对典型的McKee-Farrar金属对金属髋关节假体在简单的稳态旋转下进行了弹性流体动力润滑(EHL)分析。最初使用有限元方法研究水泥和骨对干燥条件下两个关节表面之间的预计接触压力分布的影响,然后确定润滑所需的股骨和髋臼组件的弹性变形分析。雷诺方程和弹性方程都通过有限差分法进行耦合和数值求解。与大型McKee-Farrar金属对金属髋关节植入物相关的减少接触应力和促进液膜润滑的重要特征被确定为大股骨头和薄髋臼杯。对于在典型的步行条件下考虑的典型的McKee-Farrar金属对金属髋关节假体,股骨头半径从14毫米增加到17.4毫米(固定的径向间隙为79μm)导致减少了25%最大干接触压力,并且预计的最小膜厚增加60%。此外,发现同时考虑到骨水泥和骨的预计最大接触压力降低了约80%,而预计最小膜厚则增加了50%。尽管由于股骨头大且髋臼杯薄而使预计的最小润滑膜厚度显着增加,但在估计的体内稳态行走条件下,McKee-Farrar金属对金属髋关节植入物的混合润滑方式仍可预测,取决于轴承表面的表面粗糙度。这清楚地证明了材料,设计和制造参数对这些难对付的髋关节假体的摩擦学性能的重要影响。此外,在当前的接触力学分析中,未发现由于髋臼杯相对较薄而导致的弹性的显着增加导致了赤道接触和球的抓握。

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