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Wear and friction characterization of materials for hip prosthesis

机译:髋关节假体材料的磨损和摩擦特性

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摘要

Many problems which lead to the loosening of a prosthesis are due to the wear of materials used for the substitution of the articulation. Wear reduces the lifetime of a prosthesis, induces the formation of potentially harmful debris and involves the risks of a new surgical operation. The goal of this study, carried out in the laboratory, is to quantify wear and friction of different materials used for the friction parts of hip prosthesis. Currently, the materials used are metallic alloys, ultra-high molecular weight polyethylene (UHMWPE) and ceramics. In this study, we carried out tribological tests with different couples (metallic alloys/UHMWPE, ceramics/UHMWPE and ceramics/ceramics) and we compared their behavior in terms of friction and wear scars morphology. The used ceramics are composed of alumina and zirconia which are produced by an original process. To carry out the tribological tests whose conditions are defined by international standards, a versatile tribometer has been developed. The results show a lower friction coefficient in the case of ceramics/ceramics couples than in the case of metallic alloys/UHMWPE couples. We also studied the wear surfaces by profilometry and electron microscopy. The wear of UHMWPE is very low when in contact with ceramics, low with Co-Cr alloy and high with stainless steel. Our ceramics/ceramics couples show no wear.
机译:导致假体松动的许多问题归因于用于代替关节的材料的磨损。磨损会缩短假体的寿命,诱发潜在有害碎片的形成,并带来新的外科手术风险。在实验室中进行的这项研究的目的是量化用于髋关节假体摩擦部位的不同材料的磨损和摩擦。当前,使用的材料是金属合金,超高分子量聚乙烯(UHMWPE)和陶瓷。在这项研究中,我们对不同的配对(金属合金/ UHMWPE,陶瓷/ UHMWPE和陶瓷/陶瓷)进行了摩擦学测试,并比较了它们在摩擦和磨损痕迹形态方面的行为。所用的陶瓷由氧化铝和氧化锆组成,它们是通过原始工艺生产的。为了进行国际标准定义的摩擦学测试,已经开发了一种多功能摩擦计。结果表明,陶瓷/陶瓷电偶的摩擦系数比金属合金/ UHMWPE电偶的摩擦系数低。我们还通过轮廓仪和电子显微镜研究了磨损表面。与陶瓷接触时,UHMWPE的磨损非常低,Co-Cr合金的磨损低,而不锈钢的磨损则高。我们的陶瓷/陶瓷对没有磨损。

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