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Electrical tracking performance of LLDPE-natural rubber blends by employing combination of leakage current level and rate of carbon track propagation

机译:结合泄漏电流水平和碳径迹传播速率,LLDPE-天然橡胶共混物的电径迹性能

摘要

Electrical tracking develops from surface discharge activity associated with the flow of leakage current on insulator surface under wet and contaminated conditions. Arcs created from this surface discharge phenomenon burn the polymer insulator material and create carbonized tracks in the long run. This paper reports on electrical tracking performance through the observation of leakage current and carbon track development of blends of linear low-density polyethylene with natural rubber (LLDPE/NR) either filled with or without alumina trihydrate. An electrical tracking and erosion test using the inclined-plane tracking method is conducted to study the overall performance of surface tracking properties. The combined effect of leakage current level and carbon track propagation rate is used as a new technique for describing the level of electrical tracking performance based on the proposed normalized degradation index. Morphological analysis is also carried out to investigate the surface microstructure before and after the tracking test. The experimental results show that different material compositions affect the leakage current and carbon track development. In addition, the calculated normalized degradation index has shown some correlation with the degree of surface deterioration.
机译:在潮湿和受污染的条件下,绝缘体表面上的泄漏电流与表面放电活动有关,从而形成电跟踪。从这种表面放电现象产生的电弧从长远来看会燃烧聚合物绝缘体材料并产生碳化痕迹。本文通过观察漏电流和线性低密度聚乙烯与填充或不填充三水合氧化铝的天然橡胶(LLDPE / NR)的共混物的碳迹线发展来报告电跟踪性能。进行了使用斜面跟踪方法的电跟踪和腐蚀测试,以研究表面跟踪特性的总体性能。泄漏电流水平和碳径迹传播速率的组合效应被用作一种新技术,用于基于提出的归一化退化指标来描述电径迹性能的水平。还进行了形态分析以研究跟踪测试之前和之后的表面微观结构。实验结果表明,不同的材料成分会影响漏电流和碳径迹的发展。另外,计算出的归一化劣化指数已经显示出与表面劣化程度的一些相关性。

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