Space charge development in XLPE insulation with and without tree retardant subjected to DC field

M. Abou-Dakka, A. Bulinski, S. Bamji
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Abstract

Using the Thermal Step Method (TSM), which is a completely non-destructive technique to determine space charge in polymeric insulation, the evolution of the TSM current response and the space charge density during long-term dc aging have been studied. The measurements were performed on two types of XLPE insulation with significantly different electrical tree initiation properties. One type of XLPE contained a hindered amine light stabilizer (HALS) to retard electrical treeing while the other did not. The type of antioxidants and their concentration were the same in both materials. Care was taken during insulation aging to avoid any partial discharges. Space charge density was determined from the TSM measurements using inverse matrix calculations. Although the overall space charge quantities accumulated in both materials during aging were similar, the charge distributions showed notable differences.
带和不带阻燃剂的交联聚乙烯绝缘在直流电场作用下的空间电荷发展
采用热步进法(TSM)这一完全无损的测定聚合物绝缘中空间电荷的技术,研究了长期直流老化过程中TSM电流响应和空间电荷密度的变化规律。测量了两种不同类型的XLPE绝缘材料,它们具有显著不同的电气树起始性能。一种类型的XLPE含有阻碍胺光稳定剂(HALS)来延缓电生长,而另一种类型的XLPE则没有。两种材料中抗氧化剂的种类和浓度相同。在绝缘老化过程中要注意避免任何局部放电。利用逆矩阵计算从TSM测量中确定空间电荷密度。两种材料在时效过程中积累的空间电荷总量相似,但电荷分布有显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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