有气孔和无气孔的PET绝缘的PD特性和降解的比较

D. Adhikari, D. Hepburn, B. Stewart
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引用次数: 7

摘要

局部放电(Partial Discharge, PD)是电力绝缘系统故障的主要原因,它会加剧绝缘系统的故障。众所周知,固体和液体绝缘中存在的空隙会引起局部放电。控制PD活性的因素包括存在的压力和气体类型。当PD在绝缘中发生时,会产生压力,并且由于能量输入而改变气体产物。一系列的人造空洞实验正在进行中,这些空洞是由聚合物的分层部分形成的。一组样品在聚合物内部有一个空隙,无法进入外部大气;第二组样品是用通风口将空洞与外部大气连接起来的。两组样品在相同的电气条件下承受相同时间的应力。调查的物理和化学差异和PD模式记录如下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of PD characteristics and degradation in PET insulation with vented and unvented voids
Partial Discharge (PD) results from faults in power insulation systems and exacerbates failure. It is known that the presence of voids in solid and liquid insulation give rise to PD. Factors which control the PD activity include pressure and type of gas present. When PD occurs in insulation, pressure is created and gaseous products changed due to the energy input. A series of experiments is being carried out on artificial voids, created from layered sections of polymer. One set of samples has a void inside the polymer with no access to the outer atmosphere; a second set of samples is created with a vent connecting the void to the outer atmosphere. Both sample sets are stressed at the same electrical conditions for same period of time. Investigation of the physical and chemical differences and PD patterns recorded follows.
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