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Effect of counterface on the tribology of UHMWPE in the presence of proteins

机译:蛋白质存在下反面对UHMWPE摩擦学的影响

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Artificial joints in orthopedics occupy a principal position owing to the increase in number of cases suffering from arthritis and associated diseases in addition to impairment caused by accidents. In this work, one of the most commonly used joint material, i.e. ultrahigh molecular weight polyethylene (UHMWPE), was tested against the duplex stainless steels instead of the conventional 316 L stainless steel. The UHMWPE was found to exhibit the lowest friction coefficient and wear rates when lubricated with water followed by globulin and glucose. The friction coefficient in the presence of egg albumen was higher along with high wear rates recorded. Post-test evaluation of surface roughness and wear scar/track analysis was performed to identify the wear mechanisms. Worn surfaces were analyzed using a differential scanning calorimeter for changes in crystallinity with sliding. The specimens tested under lubricated conditions with glucose, egg albumen and globulin indicated the presence of reaction products on the worn surface. Adhesive and corrosive wear mechanisms were the predominant modes of wear identified on the polymer samples. The wear tracks indicated that the proteins did react with the counterface material forming a thin deposit on them. Low temperature nitriding of the duplex stainless steel counterfaces were performed and the UHMWPE specimens were tested under similar conditions against the nitrided surfaces. Low temperature nitriding of the counterface did result in improved tribological behavior of UHMWPE and the corrosive effects were minimal.
机译:除了由于事故造成的损害之外,由于关节炎和相关疾病的病例数量增加,整形外科中的人工关节占据了主要位置。在这项工作中,针对双相不锈钢而不是常规的316 L不锈钢,测试了一种最常用的接头材料,即超高分子量聚乙烯(UHMWPE)。发现当用水,接着是球蛋白和葡萄糖润滑时,UHMWPE表现出最低的摩擦系数和磨损率。存在蛋清的情况下,摩擦系数较高,且记录的磨损率较高。测试后对表面粗糙度进行了评估,并进行了磨损痕迹/痕迹分析,以确定磨损机理。使用差示扫描量热仪分析磨损的表面的结晶度随滑动的变化。在润滑条件下用葡萄糖,蛋清和球蛋白进行测试的标本表明在磨损表面上存在反应产物。粘合剂和腐蚀性磨损机理是聚合物样品上确定的主要磨损方式。磨损轨迹表明,蛋白质确实与对立面材料发生反应,在其上形成薄薄的沉积物。进行了双相不锈钢对接面的低温渗氮,并在相似的条件下针对氮化表面对UHMWPE试样进行了测试。对面的低温渗氮确实改善了UHMWPE的摩擦学行为,并且腐蚀作用极小。

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