首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Strain-induced microstructural rearrangement in ultra-high molecular weight polyethylene for hip joints: A comparison between conventional and vitamin E-infused highly-crosslinked liners
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Strain-induced microstructural rearrangement in ultra-high molecular weight polyethylene for hip joints: A comparison between conventional and vitamin E-infused highly-crosslinked liners

机译:应变引起的髋关节超高分子量聚乙烯的微观结构重排:传统和注入维生素E的高交联衬垫之间的比较

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摘要

Infusion of vitamin E (alpha-tocopherol) in highly crosslinked ultra-high molecular weight polyethylene (UHMWPE) liners has been conceived to achieve superior oxidation stability while preserving enhanced mechanical properties as compared to post-irradiation remelted liners. However, the presence of an antioxidant in the material microstructure brings an issue of concern in whether a "foreign substance" might reduce radiation crosslinking efficiency and/or change microstructural characteristics by diffusing into UHMWPE. The key to clarify this fundamental issue resides in performing a quantitative evaluation of the obtained material structure and its polymeric chain mobility on the molecular scale. In this paper, a Raman spectroscopic examination is presented of molecular orientation and phase fractions in as-processed vitamin E-infused UHMWPE acetabular liners in comparison with a model (undoped and unirradiated/uncrosslinked) and a conventional (undoped and 33 kGy-sterilized by gamma-irradiation) UHMWPE liners. The microstructural responses of structurally different liners to externally applied compressive strain were also monitored. The main results of the spectroscopic analyses can be summarized as follows: (i) preliminary gamma irradiation reduced the fraction of amorphous phase and increased the degree of molecular alignment, the vitamin E-infused liner preserving the crystallinity level achieved by the 100-kGy irradiation injected before infusion; (ii) the presence of vitamin E significantly promoted orientational randomness, which increased with increasing compressive strain magnitude, a phenomenon beneficial to minimize strain-softening-assisted wear phenomena.
机译:与辐照后重熔的衬里相比,已设想在高度交联的超高分子量聚乙烯(UHMWPE)衬里中注入维生素E(α-生育酚)可实现出色的氧化稳定性,同时保留增强的机械性能。但是,材料微结构中抗氧化剂的存在引起了一个问题,即“外来物质”是否会扩散到UHMWPE中而降低辐射的交联效率和/或改变微结构特性。澄清这一基本问题的关键在于对获得的材料结构及其在分子规模上的聚合物链迁移率进行定量评估。在本文中,与模型(未掺杂和未辐照/未交联)和常规模型(未掺杂和经33 kGy灭菌)进行了拉曼光谱检查,比较了经加工维生素E注入的UHMWPE髋臼衬垫的分子取向和相分数。 γ射线)超高分子量聚乙烯衬里。还监测了结构不同的衬里对外部施加的压缩应变的微观结构响应。光谱分析的主要结果可归纳如下:(i)初步的γ辐照减少了非晶相的比例并提高了分子排列的程度,注入维生素E的衬里保持了100 kGy辐照所达到的结晶度输液前注射; (ii)维生素E的存在显着促进了取向随机性,该取向性随压缩应变幅值的增加而增加,这种现象有利于最小化应变软化辅助磨损现象。

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