首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Potential for adhesive wear in friction couples of UHMWPE running against oxidized zirconium, titanium nitride coatings, and cobalt-chromium alloys.
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Potential for adhesive wear in friction couples of UHMWPE running against oxidized zirconium, titanium nitride coatings, and cobalt-chromium alloys.

机译:UHMWPE摩擦副中与氧化锆,氮化钛涂层和钴铬合金接触的粘合剂磨损的可能性。

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摘要

The classical wear mechanisms abrasion, fatigue, and adhesion are the most frequent causes of surface changes of ultra high molecular weight polyethylene (UHMWPE) in artificial joints. The counterpart material has a strong influence on the wear and friction behavior of artificial joints due to its abrasive properties and adhesive interaction with UHMWPE. The formation of a transfer layer on the counterpart in UHMWPE bearing systems is often described as being a clear indication of strong adhesive forces. The influence of using a cobalt-chromium-molybdenum (CoCrMo) alloy, a titanium nitride plasma coating or an oxidized zirconium alloy on adhesive wear was studied. The surface free energy and the bonding forces of these counterpart materials to UHMWPE were investigated. Catalytic effects on the degradation behavior of polyethylene, the micro friction behavior, and the build-up and constitution of a transfer layer deposited under loads, and relative velocities that are relevant in knee joints were analyzed.
机译:经典的磨损机制是磨损,疲劳和粘附,是人造关节中超高分子量聚乙烯(UHMWPE)表面变化的最常见原因。对应的材料由于其磨蚀性和与UHMWPE的粘合作用,对人造关节的磨损和摩擦行为有很大的影响。在UHMWPE轴承系统中,在对应部件上形成转移层通常被描述为强烈的粘附力的明确指示。研究了使用钴铬钼(CoCrMo)合金,氮化钛等离子体涂层或氧化锆合金对粘合剂磨损的影响。研究了这些配对材料与UHMWPE的表面自由能和结合力。分析了对聚乙烯降解行为的催化作用,微摩擦行为以及负载下沉积的转移层的堆积和结构,以及与膝关节相关的相对速度。

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