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Influence of gamma-irradiation and temperature on the mechanical properties of EPDM cable insulation

机译:γ辐射和温度对EPDM电缆绝缘机械性能的影响

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The mechanical properties of EPDM polymers, degraded as a result of extensive thermal and radiochemical aging treatment, are studied. The focus is given to dose rate effects in polymer insulation materials extracted from industrial cables in use in Belgian nuclear power plants. All studied mechanical characteristics such as the ultimate tensile stress, the Young's modulus, and the total elongation (or elongation at break) are found to be strongly affected by the irradiation dose. The ultimate tensile stress and Young's modulus are clearly exhibiting the dose rate effect, which originated from oxidation mediated interplay of polymer cross-linking and chain scission processes. The change of crossover between these two processes is found to be gradual, without critical dose rate or temperature values. On the contrary, the total elongation is observed not to be sensitive neither to irradiation temperature nor to the dose rate. Both cross-linking and chain scission seem to affect the total elongation in a similar way by reducing the average polymers chain length. This idea is confirmed by the model which shows that all total elongation data as a function of irradiation time can be reproduced by varying a single parameter, the pre-exponential factor of the irradiation rate constant. (C) 2016 Published by Elsevier Ltd.
机译:研究了由于广泛的热和放射化学老化处理而退化的EPDM聚合物的机械性能。重点是从比利时核电站使用的工业电缆中提取的聚合物绝缘材料中的剂量率效应。发现所有研究的机械特性,例如极限拉伸应力,杨氏模量和总伸长率(或断裂伸长率)都受到辐照剂量的强烈影响。极限拉伸应力和杨氏模量显然表现出剂量率效应,这是由于氧化介导的聚合物交联和断链过程之间的相互作用。发现这两个过程之间的交叉变化是逐渐的,没有临界剂量率或温度值。相反,观察到总伸长率既不对照射温度也不对剂量率敏感。交联和断链似乎都通过减少平均聚合物链长以类似的方式影响总伸长率。该模型证实了这一思想,该模型表明,可以通过改变单个参数(辐照速率常数的指数前因子)来再现所有与辐照时间有关的总伸长率数据。 (C)2016由Elsevier Ltd.出版

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