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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Structural changes of UHMWPE after e-beam irradiation and thermal treatment.
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Structural changes of UHMWPE after e-beam irradiation and thermal treatment.

机译:电子束辐照和热处理后超高分子量聚乙烯的结构变化。

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Ultra-high molecular weight polyethylene (UHMWPE) was irradiated with accelerated electrons (1 MeV in air) using high dose rates (> 25 kGy/min) and thin specimens (thickness 1 mm). Parts of the specimens were remelted (200 degrees C for 10 min; 150 degrees C for 0, 2, 10, 30, 60 min). All specimens were stored in nitrogen in the dark at 5 degrees C. Supermolecular structure, extent of crosslinking, oxidative degradation, and macroradical content were studied by a number of methods (SAXS, WAXS, SEM, DSC, FTIR, ESR, TGA, solubility experiments, image analysis). The results obtained with irradiated samples were compared with those obtained with irradiated and remelted samples. It was confirmed that crosslinking predominates over chain scission at very high dose rates, even if the irradiation is performed in air. Discrepancies concerning supermolecular structure changes in UHMWPE after irradiation and thermal treatment, found in various studies in the literature, are discussed. A simple model, which describes and explains all supermolecular structure changes, is introduced. An effective way of eliminating residual macroradicals in UHMWPE is proposed.
机译:使用高剂量率(> 25 kGy / min)和薄样本(厚度1 mm),用加速电子(空气中1 MeV)照射超高分子量聚乙烯(UHMWPE)。重新熔化样品的一部分(200摄氏度10分钟; 150摄氏度0、2、10、30、60分钟)。所有标本都在5摄氏度的黑暗环境中储存在氮气中。通过许多方法(SAXS,WAXS,SEM,DSC,FTIR,ESR,TGA,溶解度)研究了超分子结构,交联程度,氧化降解和大分子含量实验,图像分析)。将用辐照样品获得的结果与用辐照和重熔样品获得的结果进行比较。可以确认,即使在空气中进行辐照,在很高剂量率下交联仍比断链更为重要。讨论了UHMWPE在辐照和热处理后超分子结构变化的差异,在文献中的各种研究中都对此进行了讨论。介绍了一个描述和解释所有超分子结构变化的简单模型。提出了一种消除超高分子量聚乙烯中残余基团的有效方法。

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