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首页> 外文期刊>Journal of Applied Polymer Science >Thermal and dynamic mechanical properties of vitamin e infused and blended ultra-high molecular weight polyethylenes
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Thermal and dynamic mechanical properties of vitamin e infused and blended ultra-high molecular weight polyethylenes

机译:掺和共混超高分子量聚乙烯的维生素e的热力学和动态力学性能

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摘要

Vitamin E (or α-tocopherol) is an alternative via to thermal treatments to achieve oxidative stability of gamma or electron beam irradiated ultra-high molecular weight polyethylenes (UHMWPE) used in total joint replacements. Our aim was to study the effects of vitamin E on the molecular dynamics and microstructural properties of UHMWPE. We hypothesized that the antioxidant would plasticize UHMWPE. Vitamin E was incorporated into UHMWPE at different concentrations by diffusion and blending and detected by ultraviolet and infrared spectroscopies from 500 ppm and 4000 ppm, respectively. Dynamic mechanical thermal analysis was used to characterize the influence of this antioxidant in the relaxations of the raw material. Differential scanning calorimetry and transmission electron microscopy served to characterize thermal and microstructure properties, respectively. Vitamin E concentrations above 3% by weight significantly reduced the degree of crystallinity and increased the melting transition temperature of raw UHMWPE. The presence of increasing concentrations of α-tocopherol introduced and/or strengthened the beta relaxation, which was also shifted toward gradually lower temperatures and had rising activation energies up to 188 kJ/mol. In addition, the gamma relaxation remained unaltered on vitamin E addition. Therefore, no plasticizing effects of vitamin E on the molecular dynamics of UHMWPE could be confirmed from mechanical spectroscopy data. However, the α relaxation was modified in intensity and location due to the changes in the degree of crystallinity introduced by the incorporation of vitamin E.
机译:维生素E(或α-生育酚)是热处理的替代方法,可实现全关节置换中使用经γ射线或电子束辐照的超高分子量聚乙烯(UHMWPE)的氧化稳定性。我们的目的是研究维生素E对UHMWPE分子动力学和微观结构性质的影响。我们假设抗氧化剂会增塑超高分子量聚乙烯。通过扩散和共混将维生素E以不同浓度掺入UHMWPE中,并分别通过紫外和红外分光光度法(分别从500 ppm和4000 ppm)进行检测。使用动态机械热分析来表征该抗氧化剂对原材料松弛的影响。差示扫描量热法和透射电子显微镜分别用于表征热和微观结构性质。维生素E的浓度超过3%(重量)时,会显着降低结晶度,并会增加原料超高分子量聚乙烯的熔融转变温度。增加的α-生育酚浓度的存在会引入和/或增强β弛豫,β弛豫也朝着逐渐降低的温度转移,并具有高达188 kJ / mol的活化能。另外,添加维生素E后,伽马弛豫保持不变。因此,从机械光谱数据不能证实维生素E对UHMWPE分子动力学的增塑作用。但是,由于掺入维生素E导致结晶度的变化,α弛豫的强度和位置得到了改善。

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