Experimental and simulation studies on room temperature vulcanization (RTV) silicone material under inclined plane tracking and erosion test

A. Gomez, A. B. R. Mathersa, N. Vasudev
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引用次数: 1

Abstract

In an electric power system, one of the most vital equipment is the insulator. In early times, porcelain insulators are commonly used in transmission as well as in distribution network. The proposal of this work is to make sure that safer and more protected distribution system, to decrease maintenance expenses of the insulation system and to enhance system efficiency. The aim of this paper was to study and assess the performance of RTV (Room temperature vulcanization) silicone materials used to reduce flashover in high voltage insulators that run in polluted environments. Electrical tracking is a development process of a conducting path across the material due to erosion under High Voltage application. The leakage current on the polluted surface resulted in the material deterioration. Electric field and voltage distribution for RTV silicone material under contamination condition have been done using finite element analysis. The simulation works using Finite Element software of ElecNet was applied to the tracking test condition of IEC 60587 standards. The results show that the electric field strength is high on the edges of pollutant track at a higher voltage level, and pollutant track has no effect on the voltage distribution along the surface. Experiments have been conducted for the RTV silicone material for the different voltage and contaminant flow as per the standards. From the results, it was observed that increase in voltage potential eventually increases the electric field distribution. The leakage current was measured across the shunt using the Pico scope. A protective circuit was made across the shunt. The leakage current pattern has been studied on the different applied voltage for the RTV silicone material. Room Temperature Vulcanization silicone material shows an evidence of good insulation to tracking and erosion test.
室温硫化(RTV)有机硅材料斜面跟踪和侵蚀试验的实验与模拟研究
在电力系统中,绝缘体是最重要的设备之一。早期,在输电和配电网中普遍使用瓷绝缘子。为了保证配电系统更安全、更受保护,降低绝缘系统的维护费用,提高系统效率。本文的目的是研究和评估室温硫化有机硅材料用于降低在污染环境中运行的高压绝缘子的闪络性能。电跟踪是在高压作用下,由于材料的腐蚀而形成的导电路径的发展过程。污染表面的泄漏电流导致材料劣化。采用有限元方法对污染条件下RTV有机硅材料的电场和电压分布进行了分析。利用有限元软件ElecNet进行仿真工作,应用于IEC 60587标准的跟踪试验工况。结果表明:在较高的电压水平下,污染轨迹边缘的电场强度较高,污染轨迹对表面电压分布没有影响;按照标准对RTV有机硅材料在不同电压和污染物流量下进行了实验。结果表明,电压电位的增大最终会使电场分布增大。使用Pico示波器测量分流器上的泄漏电流。在分流器上安装了保护电路。研究了RTV硅酮材料在不同外加电压下的泄漏电流分布。室温硫化有机硅材料表现出良好的绝缘跟踪和侵蚀试验的证据。
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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