首页> 外文期刊>The Journal of arthroplasty >Plasticity-induced damage layer is a precursor to wear in radiation-cross-linked UHMWPE acetabular components for total hip replacement. Ultra-high-molecular-weight polyethylene.
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Plasticity-induced damage layer is a precursor to wear in radiation-cross-linked UHMWPE acetabular components for total hip replacement. Ultra-high-molecular-weight polyethylene.

机译:可塑性诱导的损伤层是辐射交联的UHMWPE髋臼组件磨损的先兆,可用于全髋关节置换。超高分子量聚乙烯。

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摘要

The mechanism for the improved wear resistance of cross-linked ultra-high-molecular-weight polyethylene (UHMWPE) remains unclear. This study investigated the effect of cross-linking achieved by gamma irradiation in nitrogen on the tribologic, mechanical, and morphologic properties of UHMWPE. The goal of this study was to relate UHMWPE properties to the wear mechanism in acetabular-bearing inserts. Wear simulation of acetabular liners was followed by detailed characterization of the mechanical behavior and crystalline morphology at the articulating surface. The wear rate was determined to be directly related to the ductility, toughness, and strain-hardening behavior of the UHMWPE. The concept of a plasticity-induced damage layer is introduced to explain the near-surface orientation of the crystalline lamellae observed in the wear-tested acetabular liners. Cross-linking reduces abrasive wear of acetabular components by substantially reducing--but not eliminating--the plasticity-induced damage layer that precedes abrasive wear.
机译:改善交联超高分子量聚乙烯(UHMWPE)的耐磨性的机制仍不清楚。这项研究调查了在氮气中通过γ辐照实现的交联对UHMWPE的摩擦学,力学和形态学特性的影响。这项研究的目的是将UHMWPE特性与髋臼轴承嵌件的磨损机理联系起来。髋臼内衬的磨损模拟后,详细描述了在关节表面的机械行为和晶体形态。确定磨损率与UHMWPE的延展性,韧性和应变硬化行为直接相关。引入了可塑性引起的损伤层的概念,以解释在经过磨损测试的髋臼内衬中观察到的晶体薄片的近表面取向。交联通过显着减少(但不能消除)磨料磨损之前的塑性诱导损伤层,从而减少了髋臼组件的磨料磨损。

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