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Thermal degradation of chlorosulfonated polyethylene rubber and ethylene propylene diene terpolymer

机译:氯磺化聚乙烯橡胶和乙烯丙烯二烯三元共聚物的热降解

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摘要

In this work, the thermal degradation of chlorosulfonated polyethylene rubber (CSM) and ethylene pro pylene diene terpolymer (EPDM) were studied. The thermogravimetry of CSM and EPDM were firstly ana lyzed, and the loss in elongation and fatigue strength of CSM and EPDM due to thermal and humidity conditions was measured. To evaluate the degradation of these properties, the Arrhenius equation was used to confirm the relationship between temperature and exposure time. From these evaluation meth ods, the thermal reduction of fatigue strength can be predicted by taking into account the temperature and exposure time. The acceleration in the thermal degradation of elongation and fatigue strength were almost equal. In addition, the activation energy of thermogravimetry agreed well with that of fatigue strength. Next, the viscoelastic behavior of virgin CSM, EPDM and their thermal degradation were mea sured. The thermal degradations of mechanical loss tangent were evaluated by using the Arrhenius equa tion to confirm the relationship between the temperature and the exposure time. The acceleration in the thermal degradation of a mechanical loss tangent agreed well with the acceleration in the thermal deg radation of elongation and of fatigue strength.
机译:在这项工作中,研究了氯磺化聚乙烯橡胶(CSM)和乙烯丙烯二烯三元共聚物(EPDM)的热降解。首先分析了CSM和EPDM的热重,并测量了CSM和EPDM在热和湿度条件下的伸长率和疲劳强度损失。为了评估这些特性的退化,使用了Arrhenius方程式来确认温度和暴露时间之间的关系。从这些评估方法中,可以通过考虑温度和暴露时间来预测疲劳强度的热降低。伸长率的热降解的加速和疲劳强度几乎相等。另外,热重法的活化能与疲劳强度的活化能非常吻合。接下来,测定原始CSM,EPDM的粘弹性行为及其热降解。机械损耗角正切的热降解通过使用Arrhenius方程进行评估,以确认温度与暴露时间之间的关系。机械损耗角正切的热降解的加速度与伸长率和疲劳强度的热变形的加速度非常吻合。

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