首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Tribological investigation of ultra-high molecular weight polyethylene against advanced ceramic surfaces in total hip joint replacement
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Tribological investigation of ultra-high molecular weight polyethylene against advanced ceramic surfaces in total hip joint replacement

机译:全髋关节置换中超高分子量聚乙烯对高级陶瓷表面的摩擦学研究

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摘要

The aim of the study was to investigate whether a modified ceramic head surface could reduce the friction and wear rate of simulated ceramic-on-polyethylene hip joints. To address this aim, ultra-high molecular weight polyethylene (UHMWPE) was made to slide on aluminium oxide (Al2O3), dimpled Al2O3, diamond-like carbon (DLC) coated and DLC-coated dimpled substrates. The experiment condition was replicated to simulate artificial hip joints in terms of contact pressure, speed and temperature. UHMWPE on non-dimpled Al2O3 showed lower friction coefficient and wear rate compared to other advanced surfaces. Lower wettability, and higher hardness and surface adhesion of DLC resulted in increased friction and wear. The high difference in modulus of elasticity and hardness between UHMWPE and both, Al2O3 and DLC, reduced the effectiveness of textured surface techniques in friction and wear reduction. Therefore, no tribological benefit was found by fabricating either DLC coating or surface texturing on hard surface when rubbed against softer UHMWPE.
机译:该研究的目的是研究改性的陶瓷头部表面是否可以减少模拟陶瓷-聚乙烯-聚乙烯髋关节的摩擦和磨损率。为了实现该目的,制造了超高分子量聚乙烯(UHMWPE),使其在氧化铝(Al2O3),凹坑的Al2O3,类金刚石碳(DLC)涂层和DLC涂层的凹坑基板上滑动。复制实验条件以模拟人造髋关节的接触压力,速度和温度。与其他高级表面相比,在未压制的Al2O3上的UHMWPE显示出较低的摩擦系数和磨损率。较低的润湿性以及较高的DLC硬度和表面附着力会导致摩擦和磨损增加。 UHMWPE与Al2O3和DLC两者之间的弹性模量和硬度差异很大,降低了纹理表面技术在减少摩擦和磨损方面的有效性。因此,在较软的UHMWPE上摩擦时,通过在硬表面上制造DLC涂层或表面纹理化都没有发现摩擦学益处。

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