封闭孔洞和连接封闭孔洞和通气孔洞的PET的PD降解分析

D. Adhikari, D. Hepburn, B. Stewart
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引用次数: 1

摘要

高分子绝缘材料具有优良的电性能,广泛应用于电力设备中。然而,当它们受到部分放电(PD)时,它们会被降解。控制PD活性的因素包括存在的压力和气体类型。独立空隙中的压力变化与有通道的空隙中的压力变化不同;此外,一个与外部大气相连的通道可以使气体环境焕然一新。一系列的实验是在人造空洞上进行的,这些空洞是由聚合物的分层部分形成的。一组样品在聚合物内部有一个空隙,无法进入外部大气;第二组样品具有具有封闭末端通道的空隙,第三组样品具有将该空隙连接到外部大气的通风口。所有三组样品在同一时间段内使用相同的电气条件进行应力测试。给出了三种不同排列方式下PD特性和PD诱导降解的测量差异。
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PD degradation analysis of PET with enclosed voids and voids connected to closed and vented channels
Polymeric insulating materials with excellent electrical properties are widely used in electrical power equipment. They are degraded however when they are subjected to partial discharges (PD). Factors which control the PD activity include pressure and type of gas present. The pressure variation in a self-contained void will differ from that in voids with channels; also a void with a channel connected to external atmosphere can have the gaseous environment refreshed. A series of experiments is carried out on artificial voids, created from layered sections of polymer. One set of samples has a void inside the polymer with no access to the outer atmosphere; a second set of samples has a void with a closed end channel and a third set of samples has a vent connecting the void to the outer atmosphere. All three sample sets are stressed using the same electrical conditions for the same period of time. Measured differences in PD characteristics and PD induced degradation for the three different arrangements are presented.
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