首页> 外文会议>2017 1st International Conference on Electrical Materials and Power Equipment >Study on conduction current and space charge accumulation simultaneously in Ethylene Propylene Diene Monomer film
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Study on conduction current and space charge accumulation simultaneously in Ethylene Propylene Diene Monomer film

机译:乙丙二烯单体薄膜中同时传导电流和空间电荷的研究

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摘要

This paper investigates the space charge distribution and external current performance of Ethylene Propylene Diene Monomer (EPDM) film simultaneously by an improved integrated PEA system. Through switching the space charge and current measurement circuits, the space charge and external current were detected alternately during the electric field of 60 kV/mm and 80 kV/mm. Small amounts of homocharges accumulated inside the sample. While, an obvious electron injection occurred from cathode (Al electrode), and they moved inside the sample. This leaded to an electric field distortion near the anode. However, hole injection seemed difficult to occur from anode (semiconducting layer). Based on the measured current density and the space charge distribution, we calculated the conduction current density distribution inside the sample. The results showed that a large conduction current occurred at the beginning of measurement, which is derived from the rapid electron injection and movement. Nevertheless, it decreased with the increase of time, indicating a uniform distribution of conduction current density (less than 1 × 10 A/m). In addition, the dissipation energy density caused by space charge and conduction current was also estimated during the field application. It indicated that a high power density appeared inside the sample at the beginning of measurement. However, it gradually decreased with the increase of time. This information reveals the energy loss dynamics caused by space charge during the electric stress, which is of great importance to evaluate the influential mechanisms of space charge on aging and insulation failure.
机译:本文通过改进的集成式PEA系统同时研究了乙烯丙烯二烯单体(EPDM)薄膜的空间电荷分布和外部电流性能。通过切换空间电荷和电流测量电路,在60 kV / mm和80 kV / mm的电场期间交替检测空间电荷和外部电流。样品内部积累了少量的均电荷。同时,从阴极(铝电极)发生了明显的电子注入,它们在样品内部移动。这导致阳极附近的电场变形。但是,似乎难以从阳极(半导体层)发生空穴注入。基于测得的电流密度和空间电荷分布,我们计算了样品内部的传导电流密度分布。结果表明,在测量开始时出现了大的导电电流,这是由于电子的快速注入和移动所引起的。然而,它随时间的增加而减小,表明传导电流密度的分布均匀(小于1×10 A / m)。此外,在现场应用期间还估算了由空间电荷和传导电流引起的耗散能量密度。这表明在测量开始时样品内部出现了高功率密度。但是,随着时间的增加,它逐渐减少。该信息揭示了空间电荷在电应力作用下引起的能量损失动态,这对于评估空间电荷对老化和绝缘破坏的影响机制具有重要意义。

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