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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine >Tribological and surface analysis of 38 mm alumina–as-cast Co–Cr–Mo total hip arthroplasties
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Tribological and surface analysis of 38 mm alumina–as-cast Co–Cr–Mo total hip arthroplasties

机译:38 mm氧化铝铸造的Co-Cr-Mo全髋关节置换术的摩擦学和表面分析

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摘要

There is currently much discussion over the use of ceramic femoral components against metal acetabular cups, for use in total hip arthroplasty. The current study investigates six hot isostatically pressed alumina femoral heads of 38 mm diameter articulating against six as-cast Co–Cr–Mo metallic acetabular cups. Standard walking-cycle simulator wear testing was carried out to 5×106 cycles using the Durham Mark II hip wear simulator, and wear was determined gravimetrically. In addition, surface topography, using a non-contacting profilometer, an atomic force microscope, and an optical microscope, was monitored throughout the wear test. The wear of the ceramic heads was found to be undetectable using the current gravimetric method; however, a change in the surface topography was seen, as grain removal on the pole was observed through atomic force microscopy analysis. A biphasic wear pattern was found for the metallic cups, with low wear rates of 1.04 ± 0.293 mm3/106 cycles (mean, ±95 per cent confidence interval) and 0.0209 ± 0.004 mm3/106 cycles (mean, ±95 per cent confidence interval) for running-in and steady state wear phases respectively. Frictional measurement revealed that the joints were tending towards full fluid-film lubrication in parts of the walking cycle. The results show that the combination of hot isostatically pressed alumina and as-cast Co–Cr–Mo is a promising alternative for total hip arthroplasties.
机译:目前,关于在全髋关节置换术中使用陶瓷股骨部件抵制金属髋臼杯的讨论很多。当前的研究调查了六个38 mm直径的热等静压氧化铝股骨头,与六个铸态的Co-Cr-Mo金属髋臼杯铰接。使用Durham Mark II髋关节磨损模拟器对5×10 6 循环进行标准的步行周期模拟器磨损测试,并通过重量分析法确定磨损。另外,在整个磨损测试中,使用非接触轮廓仪,原子力显微镜和光学显微镜对表面形貌进行了监测。使用当前的重量分析法发现陶瓷头的磨损是无法检测到的。但是,由于通过原子力显微镜分析观察到杆上的晶粒去除,因此可以看到表面形貌的变化。发现金属杯的双相磨损模式,磨损率低,为1.04±0.293 mm 3 / 10 6 循环(平均值为±95%置信区间),并且磨合阶段和稳态磨损阶段分别为0.0209±0.004 mm 3 / 10 6 周期(平均,±95%置信区间)。摩擦测量表明,在步行周期的某些部分,关节趋向于完全润滑液膜。结果表明,热等静压氧化铝和铸态Co-Cr-Mo的组合是全髋关节置换术的有希望的替代方法。

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