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Study on long life of artificial joints by investigating optimal sliding surface geometry for improvement in wear resistance

机译:通过研究最佳滑动表面几何形状以改善耐磨性来研究人造关节的长寿命

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摘要

The effective life of artificial joints is approximately 15 years. A smooth metal sliding surface is presumably the most suitable when manufacturing artificial joints; however, the relationship between the characteristics of metal sliding surface and ultra high molecular polyethylene (UHMWPE) wear has not been confirmed. Further, there is no apparent proof that a smooth surface is the optimal option for the improvement in the wear resistance of artificial joints. In this study, we investigated the mechanism of UHMWPE wear and proved that scratch marks caused by a sliding motion against the metal surface are the prime cause of UHMWPE wear. Furthermore, we used a micro-dimpled surface as an effective sliding surface to reduce the UHMWPE wear. A 2-axes pin-on-plate sliding test proved that the life of artificial joints can be extended to approximately 35 years by using a micro-dimpled surface with 1-(mu)m deep dimples.
机译:人工关节的有效寿命约为15年。光滑的金属滑动表面大概是制造人造关节时最合适的。但是,金属滑动表面的特性与超高分子量聚乙烯(UHMWPE)磨损之间的关系尚未得到证实。此外,没有明显的证据表明,光滑的表面是改善人造关节耐磨性的最佳选择。在这项研究中,我们研究了UHMWPE磨损的机理,并证明了因在金属表面上滑动而引起的划痕是UHMWPE磨损的主要原因。此外,我们使用微凹坑表面作为有效的滑动表面,以减少UHMWPE磨损。 2轴销钉在板上的滑动试验证明,通过使用具有1μm深凹痕的微凹痕表面,人造关节的寿命可以延长到大约35年。

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