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Comparison of partial discharge characteristics and degradation in several polymeric insulators

机译:比较几种聚合物绝缘子的局部放电特性和退化

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Polymeric insulating materials with excellent electrical properties are widely used in electrical power equipment. These materials are degraded, however, when they are subjected to partial discharge (PD) with different polymeric materials possessing different levels of PD resistance. In this study the PD characteristics and degradation caused by PD are analysed and compared for four different polymers ?? poly(ether sulphone) (PES), poly(ethylene terephthalate) (PET), poly(propylene) (PP) and low-density poly(ethylene) (LDPE). An artificial void is created in each of the polymer samples and electrically stressed above PD inception voltage (PDIV) for 4 h. The simulated electric field distribution inside the void for each of the polymer materials at the respective PDIVs is modelled using COMSOL to validate the experimental results. Little work has correlated void PD characteristics with material degradation induced by PD across a range of different polymers and subsequently categorised them according to their PD resistances. This study therefore presents a comparative study of the N??Q patterns of PD pulses (a plot of the number of discharges against the measure of apparent charge), PD repetition rate and the chemical and morphological changes occurring on the void surfaces for each type of polymer. The results show that the PD resistance of these four polymers can be categorised in a decreasing order according to the following sequence: LDPE, PP, PET and PES with LDPE being most resistant to PD and PES the least resistant.
机译:具有优异电性能的聚合物绝缘材料广泛用于电力设备。然而,当这些材料经受具有不同水平的PD抗性的不同聚合物材料进行局部放电(PD)时,这些材料被降解。在这项研究中,分析和比较了四种不同聚合物的PD特性和由PD引起的降解。聚醚砜(PES),聚对苯二甲酸乙二醇酯(PET),聚丙烯(PP)和低密度聚乙烯(LDPE)。在每个聚合物样品中都会产生一个人工空隙,并在PD起始电压(PDIV)以上施加电应力4小时。使用COMSOL对每种聚合物材料在各个PDIV处的空隙内部的模拟电场分布进行建模,以验证实验结果。很少有工作将空位PD特性与PD在多种不同聚合物上引起的材料降解相关联,然后根据其PD电阻对其进行分类。因此,本研究提供了对PD脉冲的N ?? Q模式(放电次数与视在电荷的量的关系图),PD重复率以及每种类型在空隙表面上发生的化学和形态变化的比较研究。聚合物。结果表明,可以按照以下顺序将这四种聚合物的PD抵抗性按降序分类:LDPE,PP,PET和PES,其中LDPE对PD的抵抗力最高,对PES的抵抗力最低。

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