Studies of epoxy spacers subjected to internal and external partial discharge and SF/sub 6/ byproducts

J. Braun, F. Chu, A. Tymań
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引用次数: 6

Abstract

The early phases of the internal and external spacer surface degradation process were characterized using electrical and chemical techniques in order to develop a better understanding of the long-term aging mechanisms. Reaction of nitrogen gas in a discharge cavity with the epoxy void wall was readily detected by ESCA (electron spectroscopy for chemical analysis), and the technique could find application in determining the void size below which no damage occurs. A similarly substantial modification of spacer surface properties could be brought about by exposure to localized corona discharges, associated with material transfer from the electrode and leading ultimately to the formation of tracklike paths on the epoxy surface. The results are of interest in connection with the electrical treeing of GIS (gas-insulated switchgear) spacers.<>
环氧树脂隔离剂内外局部放电及SF/sub - 6副产物的研究
为了更好地了解其长期老化机制,我们利用电学和化学技术对内外间隔片表面降解过程的早期阶段进行了表征。氮气在放电腔中与环氧树脂空洞壁的反应可以通过ESCA(电子能谱化学分析)检测到,并且该技术可以应用于确定不发生损伤的空洞尺寸。暴露在局部电晕放电中,与材料从电极转移有关,并最终导致环氧树脂表面形成轨迹状路径,也会对间隔片表面特性产生类似的实质性改变。研究结果与GIS(气体绝缘开关设备)间隔片的电气树相关。
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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