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Thermally Stimulated Currents of Ethylene-Propylene Rubber with Filler

机译:带填料的乙丙橡胶的热刺激电流

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We are studying the effect of filler on the electrical properties of Ethylene-Propylene Rubber (EPR). In this paper we have measured the Thermally Stimulated Currents (TSC) of EPR with hard clay to investigate the distribution of the relaxation time, and obtained the variation of TSC curve with the temperature T_b at which the sample is polarized. When the temperature T_b is lower than room temperature, TSC curve has only one peak. But for the higher value of T_b, the TSC curve exhibits three peeks (P_h, P_m, and P_L peaks in the order of descending temperature).Assuming the two layer interfacial polarization between rubber and filler having a distributed thickness of rubber layer, we have calculated the relation between TSC curve and the polarizing temperature T_b. From these calculation we think that P_m peak is caused by two layer interfacial polarization having a distributed thickness of rubber layer.
机译:我们正在研究填料对乙丙橡胶(EPR)的电性能的影响。在本文中,我们用硬粘土测量了EPR的热刺激电流(TSC),以研究松弛时间的分布,并获得了TSC曲线随样品极化温度T_b的变化。当温度T_b低于室温时,TSC曲线仅具有一个峰。但是对于较高的T_b值,TSC曲线会出现三个偷看(P_h,P_m和P_L峰以降序排列)。假设橡胶和填充剂之间的两层界面极化具有橡胶层的厚度分布,计算出TSC曲线与偏振温度T_b之间的关系。从这些计算中,我们认为P_m峰是由具有橡胶层厚度分布的两层界面极化引起的。

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