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Oxidation and Wear of 100-Mrad Cross-linked Polyethylene Shelf-aged for 30 Years

机译:老化30年的100-Mrad交联聚乙烯的氧化和磨损

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摘要

Some previous studies suggest that aging influences wear and oxidatively degraded nonsterilized ultra-high-molecular-weight polyethylene (UHMWPE) exhibits decreased wear resistance. We therefore asked whether shelf-aging storage conditions influenced degradation and wear resistance of gamma-irradiated UHMWPE. We examined oxidation and wear of 100-Mrad gamma-irradiated UHMWPE (100-Mrad polyethylene) cups shelf-aged for 30 years without (n = 2) or with (n = 2) packages. The oxidation index of the unpackaged 100-Mrad polyethylene surface (4) was higher than that of the packaged one (2.7). The packaged 100-Mrad polyethylene cup exhibited a high wear resistance with a steady wear rate of 0.5 mg/106 cycles. In contrast, the unpackaged 100-Mrad polyethylene exhibited an extremely high initial wear rate of 187.9 mg/106 cycles over the first 0.25 × 106 cycles with a subsequently reduced wear rate of 5 mg/106 cycles after 5 × 106 cycles. Packaging over long periods inhibits surface oxidation and maintains the wear resistance of gamma-irradiated UHMWPE cups.
机译:以前的一些研究表明,老化会影响磨损,并且氧化降解的非灭菌超高分子量聚乙烯(UHMWPE)的耐磨性下降。因此,我们询问货架老化的存储条件是否影响了γ辐照的UHMWPE的降解和耐磨性。我们检查了在不使用(n = 2)或使用(n = 2)包装的情况下,保质期为30年的100-Mradγ射线辐照的UHMWPE(100-Mrad聚乙烯)杯的氧化和磨损情况。未包装的100-Mrad聚乙烯表面(4)的氧化指数高于已包装的表面(2.7)的氧化指数。包装好的100-Mrad聚乙烯杯具有很高的耐磨性,稳定磨损率为0.5mg / 10 6 个循环。相比之下,未包装的100-Mrad聚乙烯在最初的0.25×10 6 循环中表现出极高的初始磨损率,为187.9 mg / 10 6 循环,随后磨损减少5×10 6 循环后5 mg / 10 6 循环的比率。长期包装可抑制表面氧化,并保持经γ射线辐照的UHMWPE杯子的耐磨性。

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