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Improving the creep resistance and tensile property of UHMWPE sheet by radiation cross-linking and annealing

机译:通过辐射交联和退火改善UHMWPE片材的抗蠕变性和拉伸性能

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Ultra-high molecular weight polyethylene (UHMWPE) sheet was cross-linked by gamma irradiation in air with a dose of up to 300 kGy at a dose rate of 5 kGy/h and further treated by post-annealing at 120 degrees C for 4 h in vacuum. Variations in chemical structure, thermostability, crystallinity, creep resistance, and tensile properties were investigated and compared mainly by gel content TGA, DSC, and creep and tensile measurements. Gel content measurements indicated that cross-linking was predominant over chain scission during irradiation and post-annealing. Radiation cross-linking resulted in an obvious improvement in the creep resistance and tensile properties of UHMWPE. Through cross-linking, the operational temperature and yield strength of the irradiated and subsequently annealed UHMWPE sheet were improved by more than 100 degrees C and 14%, respectively, at a dose of 300 kGy. Simultaneously, Young's modulus was increased to 1413 MPa, compared with 398 MPa of pristine UHMWPE. Annealing after irradiation further improved the creep resistance and Young's modulus. Highly cross-linked UHMWPE can even be maintained at 250 degrees C for a long time without any obvious deformation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:超高分子量聚乙烯(UHMWPE)片材通过以300 kGy的剂量以5 kGy / h的剂量率在空气中进行伽马射线辐照交联,并通过在120摄氏度下进行后退火4小时进一步处理在真空中。研究了化学结构,热稳定性,结晶度,抗蠕变性和拉伸性能的变化,并主要通过凝胶含量TGA,DSC以及蠕变和拉伸测量进行了比较。凝胶含量的测量表明,在辐照和退火后,交联比断链更为重要。辐射交联导致UHMWPE的抗蠕变性和拉伸性能得到明显改善。通过交联,在300 kGy的剂量下,辐照并随后退火的UHMWPE板材的工作温度和屈服强度分别提高了100℃和14%以上。同时,与原始的UHMWPE的398 MPa相比,杨氏模量增加到1413 MPa。辐照后的退火进一步改善了抗蠕变性和杨氏模量。高度交联的UHMWPE甚至可以长时间保持在250摄氏度,而没有任何明显的变形。 (C)2016 Elsevier Ltd.保留所有权利。

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