Effect of Cumyl Alcohol in Multilayer Dielectric on Space Charge Build Up

Benny Reinmart, G. Teyssèdre, S. Le Roy, N. Sinisuka
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Abstract

One of the issues of using cross-linked Polyethylene (XLPE) in DC insulation systems is the propensity of crosslinking byproducts to promote charge buildup inside the insulation, leading potentially to insulation failure. Field-induced ionization of the molecules, like in insulating liquids, is thought to be one of the processes of charge generation. In this paper, space charge measurement is realized to probe the effect of cumyl alcohol as one of the crosslinking byproducts. Low Density Polyethylene (LDPE) is used as polymer matrix, and soaked in cumyl alcohol. We show that polyethylene naphthalate (PEN) layers constitute efficient barriers to the evaporation of cumyl alcohol from LDPE films. The space charge behavior of soaked LDPE is compared to that of reference LDPE with PEN. Significant charge build-up occurs at the LDPE/PEN interfaces due to the conductivity gradient. PEN appears not suited for such analysis as the field is concentrated in the layer and is weak in the bulk LDPE.
多层介质中异丙醇对空间电荷积累的影响
在直流绝缘系统中使用交联聚乙烯(XLPE)的问题之一是交联副产物倾向于促进绝缘内部的电荷积聚,从而可能导致绝缘失效。像在绝缘液体中一样,分子的场致电离被认为是电荷产生的过程之一。本文采用空间电荷测量的方法,考察了交联副产物之一库丙醇的作用。采用低密度聚乙烯(LDPE)作为聚合物基体,并在异丙醇中浸泡。我们表明,聚萘二甲酸乙二醇酯(PEN)层构成有效的屏障,以蒸发cumyl醇从LDPE薄膜。将浸泡LDPE的空间电荷行为与参考LDPE的空间电荷行为进行了比较。由于电导率梯度,在LDPE/PEN界面处发生了显著的电荷积聚。PEN似乎不适合这种分析,因为场集中在层中,而在散装LDPE中很弱。
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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