Injection of charge carriers and space charge build-up in fluoropolymer dielectrics

Z.L. Wu, G. G. Govinda Raju
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Abstract

This study concerns the injection of charge carriers and space charge build-up in fluoropolymer films by the thermally stimulated discharge (TSD) current method. Poling fields ranging from 2.5 to 20 MV m/sup -1/ are employed with the heating rates of 0.5-2 K min/sup -1/ over the temperature range of 0-200/spl deg/C for TSD experiments. Silver and aluminum electrodes are employed to study the role of the cathode in the injection mechanism. The TSD currents are observed to depend on the cathode material. The magnitude of current peak and the total charge released to the external circuit with both electrode materials show a saturating trend with the poling field. This observation is consistent with the suggested mechanism of charge injection from electrodes and the space charge build up in the material. Relaxation times in the range of 4-6000 s are observed over the temperature range. Mechanisms of space charge build-up are also discussed.
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含氟聚合物电介质中载流子的注入和空间电荷的积累
本文研究了利用热刺激放电(TSD)电流法在含氟聚合物薄膜中注入载流子和空间电荷积累。TSD实验采用2.5 ~ 20 MV m/sup -1/,升温速率为0.5 ~ 2 K min/sup -1/,温度范围为0 ~ 200℃。采用银电极和铝电极研究了阴极在喷射机理中的作用。观察到TSD电流取决于阴极材料。两种电极材料的电流峰值大小和释放到外电路的总电荷随极化场的变化呈饱和趋势。这一观察结果与提出的电极电荷注入和材料空间电荷积聚的机制一致。在温度范围内观察到4- 6000s范围内的弛豫时间。讨论了空间电荷形成的机理。
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