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Partial Discharge Tests Using CIGRE Method II Upon Nanocomposite Epoxy Resins

机译:使用CIGRE方法II在纳米复合材料环氧树脂上的局部放电试验

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Nanocomposite polymers are becoming a new family of dielectric materials with promising insulating properties. In order to apply this technology to insulation systems, a study about the material longterm endurance (life) is needed. In this paper results from comparative life tests performed upon base and nanostructured epoxy resin samples are presented. The nanofiller is a organophillic-modified ultra-clean montmorillonite. Specimens were subjected to ageing under surface discharge phenomena using a standard electrode configuration, that is the CIGRE method II. Life data and partial discharge phase resolved patterns, acquired during time under stress, are presented and commented, in order to characterize the ageing processes that leads to the specimen breakdown and to explain the longer life of the nanocomposite materials. A further insight on the breakdown mechanism is obtained through microscopic observations (using optical and SEM techniques) of the surfaces of the samples before and after ageing and breakdown. A different morphology of the discharge channel walls is observable for base and nanostructured resins.
机译:纳米复合材料是具有有前途绝缘性能的新型介电材料系列。为了将该技术应用于绝缘系统,需要对材料耐久性(Life)的研究。本文提出了对基碱和纳米结构环氧树脂样品进行的比较寿命试验。纳米填充物是一种有机胞改性的超清洁蒙脱石。使用标准电极构型在表面放电现象下进行试样,即CIGRE方法II。呈现和评论在应力下获得的寿命数据和局部放电阶段分辨的模式,以表征导致样本击穿的老化过程并解释纳米复合材料的较长寿命。通过在老化和击穿之前和击穿之前和之后的样品表面的显微镜观察(使用光学和SEM技术)获得对击穿机制的进一步洞察。用于碱和纳米结构的树脂可观察到的排出通道壁的不同形态。

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