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The correlation between elongation at break and thermal decomposition of aged EPDM cable polymer

机译:老化EPDM电缆聚合物断裂伸长率与热分解的相关性

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摘要

The effect of simultaneous thermal and gamma irradiation ageing on the mechanical and physicochemical properties of industrial EPDM was investigated. Accelerated ageing, covering a wide range of dose rates, doses and temperatures, was preformed in stagnant air on EPDM polymer samples extracted from the cables in use in the Belgian nuclear power plants. The mechanical properties, ultimate tensile stress and elongation at break, are found to exhibit the strong dependence on the dose, ageing temperature and dose rate. The thermal decomposition of aged polymer is observed to be the dose dependent when thermogravimetry test is performed under air atmosphere. No dose dependence is observed when thermal decomposition is performed under nitrogen atmosphere. The thermal decomposition rates are found to fully mimic the reduction of elongation at break for all dose rates and ageing temperatures. This effect is argued to be the result of thermal and radiation mediated oxidation degradation process.
机译:研究了同时热和γ辐照对工业EPDM机械和物理化学性质的影响。加速老化,覆盖各种剂量率,剂量和温度,在从电缆中提取的EPDM聚合物样品上预先形成,在比利时核电站中使用的电缆上提取。发现突破的机械性能,极限拉伸应力和伸长率,表现出对剂量,老化温度和剂量率的强烈依赖性。当在空气气氛下进行热重试验时,观察到老化聚合物的热分解是依赖于剂量。当在氮气氛下进行热分解时,不会观察到剂量依赖性。发现热分解率完全模仿突破的伸长率的伸长率和老化温度。认为这种效果是热和辐射介导的氧化降解过程的结果。

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