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首页> 外文期刊>Acta biomaterialia >Effects of vitamin E blending on plastic deformation mechanisms of highly crosslinked ultrahigh molecular weight polyethylene (HXL-UHMWPE) in total hip arthroplasty
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Effects of vitamin E blending on plastic deformation mechanisms of highly crosslinked ultrahigh molecular weight polyethylene (HXL-UHMWPE) in total hip arthroplasty

机译:维生素E混合对总髋关节成形术中高度交联超高分子量聚乙烯(HXL-UHMWPE)塑性变形机制的影响

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The molecular mobility and crystalline texture development in highly crosslinked ultrahigh molecular weight polyethylene (HXL-UHMWPE) blended with antioxidant vitamin E (VE, DL-alpha-tocopherol) were studied via uniaxial compression at room temperature by means of confocal/polarized Raman spectroscopy. The results were compared to morphological analyses under the same compression conditions performed on HXL-UHMWPE prepared in exactly the same way but blending VE into the polyethylene resin (VE-free HXL-UHMWPE). These comparative analyses allow us to evaluate the physical role of VE in morphological alterations of HXL-UHMWPE induced by compression deformation, which can greatly affect its micromechanical behavior. Molecular rearrangement and phase transitions in crystalline and non-crystalline phase, i.e. amorphous and intermediate (third) phase, were found to be part of a reconstruction process after plastic deformation in the samples. Although VE-blended HXL-UHMWPE exhibited more pronounced molecular mobility, as evidenced by its significant deformation-induced texturing, crystallinity change was totally inhibited by the presence of VE during deformation. On the other hand, amorphous-to-intermediate phase transition was confirmed. VE-free HXL-UHMWPE also presented significant crystallization after deformation, but its surface texture evolution occurred to a much lesser extent. This study suggests that the addition of VE induced earlier activation of compression deformation modes in crystalline and non-crystalline phases (e.g. chain slip, interlamellar shear and rotation) due to an increase in polyethylene chain mobility. (C) 2015 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:通过共焦/偏振的拉曼光谱通过单轴压缩通过单轴压缩来研究高度交联的超高分子量聚乙烯(HXL-UHMWPE)中的分子迁移率和结晶纹理显影。将结果与在HXL-UHMWPE的相同压缩条件下的形态学分析进行了比较,但在完全相同的方式中但混合到聚乙烯树脂(无VE HXL-UHMWPE)中。这些比较分析允许我们评估VE在压缩变形引起的HXL-UHMWPE的形态改变的身体作用,这可以极大地影响其微机械行为。结晶和非结晶相的分子重排和相转变,即无定形和中间体(第三)相,发现样品中塑性变形后的重建过程的一部分。尽管Ve-Blended HXL-UHMWPE表现出更明显的分子迁移率,但是通过其显着变形诱导的纹理所证明的,结晶性变化通过在变形过程中完全抑制。另一方面,确认了无定形的中间相转变。无VE的HXL-UHMWPE在变形后也呈现了显着的结晶,但其表面纹理演化发生在更大程度上。该研究表明,由于聚乙烯链迁移率的增加,在结晶和非结晶相(例如链滑移,层滑动,层间剪切和旋转)中,添加了Ve的前方激活。 (c)2015 Acta Materialia Inc.出版的Allesvier Ltd.保留所有权利。

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