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EFFECT OF WATER AND SERUM ABSORPTION ON WEAR OF UNIRRADIATED AND CROSSLINKED UHMWPE ORTHOPAEDIC BEARING MATERIALS

机译:水和血清吸收率对超高分子量聚乙烯正交联交联骨科材料的磨损的影响

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In addition to confounding mass-based wear measurements in serum-lubricated hip simulator experiments, fluid absorption by the acetabular cups may simultaneously modify the wear resistance of the ultra-high molecular weight polyethylene (UHMWPE) from which they are composed. To decouple the fluid absorption and wear processes enabling clearer investigation of this effect, absorption was first imposed during an initial stage where UHMWPE was exposed to pressurized (10MPa) fluid. This was followed by a second stage, where resultant wear behavior was assessed by a multidirectional pin-on-flat technique that, though still providing a serum-lubricating environment, does not promote the simultaneous fluid absorption occurring in hip simulator testing. Both unirradiated and highly-crosslinked UHMWPE were investigated, each with both bovine calf serum and water soaking exposures of duration to 129 days. The pressurized soaking of a highly-crosslinked UHMWPE decreased its wear resistance, causing an increase in wear rate by approximately 50% during subsequent serum-lubricated multidirectional pin-on-flat sliding tests as compared to non-soaked material. The magnitude of this effect did not appear to depend on whether the soaking fluid was water or serum, nor did it appear to depend on soak time provided it was at least of a 14-day duration during which more rapid transient fluid absorption occurs. Such soaking did not produce as pronounced an effect on unirradiated UHMWPE, as its lack of wear resistance likely causes the absorption-affected surface region to be completed removed within the earliest stages of sliding contact.
机译:除了在血清润滑的髋关节模拟器实验中混淆基于质量的磨损测量值之外,髋臼杯对液体的吸收还可能同时改变组成它们的超高分子量聚乙烯(UHMWPE)的耐磨性。为了使流体吸收和磨损过程脱钩,从而可以更清楚地研究这种影响,首先在UHMWPE暴露于加压(10MPa)流体的初始阶段施加吸收。接下来是第二阶段,在该阶段中,通过多向平面销钉技术评估了最终的磨损行为,该技术虽然仍提供了血清润滑环境,但不会促进髋关节模拟器测试中同时发生的液体吸收。对未辐照的和高度交联的UHMWPE均进行了研究,每种均具有牛犊血清和水浸泡时间长达129天。与未浸泡的材料相比,在高度交联的UHMWPE中进行加压浸泡会降低其耐磨性,从而在后续的经血清润滑的多向平销滑动试验中使磨损率提高约50%。这种影响的程度似乎不取决于浸泡液是水还是血清,也似乎不取决于浸泡时间,只要它至少持续14天,在此期间会更快地吸收瞬时液体。这种浸泡不会对未辐照的UHMWPE产生明显的影响,因为其缺乏耐磨性可能导致在滑动接触的最早阶段内完全去除受吸收影响的表面区域。

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