温度和电压施加时间对HDPE空间电荷衰减的影响

S. Mitsumoto, M. Nagao, M. Fu, L. Dissado, J. Fothergill
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引用次数: 4

摘要

聚乙烯是一种广泛用于电力电缆绝缘的材料。本文讨论了温度和电压施加时间对HDPE中空间电荷衰减的影响。在25℃和40℃的温度下施加50kV/mm的电场时,样品保留了负电荷,负电荷随施加电压时间的增加而增加。同样的电场作用于60oc下4800s,同时产生负电荷和正空间电荷,但在90oc下只产生正电荷。随着去电压后保留的负电荷量的增加,负电荷的衰减时间也随之增加。这表明大部分被捕获的负电荷不容易被释放。在180 kV/mm和300kV/mm的电压下观察到正空间电荷。在50kV/mm下,正电荷的衰减速度远快于负电荷的衰减速度。在25℃和40℃时,正电荷的衰减时间随短路前阴极电场的增大而减小,而在60℃和90℃时则没有变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of temperature and voltage application time on space charge decay of HDPE
Polyethylene is a material that is widely used as insulation for power cables. In this paper, the effect of temperature and voltage application time on space charge decay in HDPE is described. Negative charge was found to be retained by the samples when a field of 50kV/mm was applied at temperatures of 25 and 40 degC, with an amount that increased with increasing voltage application time. The same field applied for 4800s at 60degC gave both negative and positive space charge, but only positive charge at 90 degC The decay time of the negative charge increased as the amount of negative space charge retained after voltage removal increased. This indicates that much of the trapped negative charge could not be de-trapped easily. In contrast positive space charge was observed following the application of 180 kV/mm and 300kV/mm. The speed of positive charge decay in these cases was much faster than that of the negative charge accumulated under 50kV/mm. It was also observed that the decay time of positive charge decreased with increases in the cathode field measured just before short-circuiting at 25 and 40degC, but not at 60 and 90degC.
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