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Effects of RTV coating on the electrical performance of polymer insulator under lightning impulse voltage condition

绝缘体(电) 涂层 材料科学 电压 复合材料 脉冲(物理) 高压 避雷器 电气工程 电弧 电弧闪光 硫化 聚合物 环境科学 法律工程学 电极 工程类 天然橡胶 物理 量子力学
作者
Farah Adilah Jamaludin,Mohd Zainal Abidin Ab Kadir,Mahdi Izadi,Norhafiz Azis,Jasronita Jasni,Muhammad Syahmi Abd-Rahman
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:12 (11): e0187892-e0187892 被引量:7
标识
DOI:10.1371/journal.pone.0187892
摘要

Located near the equator, Malaysia is a country with one of the highest lightning densities in the world. Lightning contributes to 70% of the power outages in Malaysia and affects power equipment, automated network systems, causes data losses and monetary losses in the nation. Therefore, consideration of insulator evaluation under lightning impulses can be crucial to evaluate and attempt to overcome this issue. This paper presents a new approach to increase the electrical performance of polymer insulators using a Room Temperature Vulcanisation (RTV) coating. The evaluation involves three different settings of polymer insulator, namely uncoated, RTV type 1, and RTV type 2 upper surface coatings. All the insulators were tested under three different conditions as dry, clean wet and salty under different impulse polarities using the even-rising test method. The voltage breakdown for each test was recorded. From the experiment, it was found that the effectiveness of the RTV coating application became apparent when tested under salty or polluted conditions. It increased the voltage withstand capabilities of the polymer insulator up to 50% from the basic uncoated insulator. Under dry and clean conditions, the RTV coating provided just a slight increase of the breakdown voltage. The increase in voltage breakdown capability decreased the probability of surface discharge and dry band arcing that could cause degradation of the polymeric material housing. The RTV type 1 coating was found to be more effective when performing under a lightning impulse. The findings might help the utility companies improve the performance of their insulators in order to increase power system reliability.

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