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Fabrication and PD-initiated Breakdown of Simulated Mica Tape Insulation Containing Epoxy Nanocomposites

机译:含有环氧纳米复合材料的模拟云母带绝缘的制造和PD-发起的破裂

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Mica epoxy insulation as used for generator stator windings is required to be improved as regards withstand electrical stress and heat dissipation. Replacement of epoxy resins by epoxy nanocomposites is a useful method to fulfil a purpose of such improvement. This paper is aimed to evaluate PD-initiated breakdown (BD) performances as one of the most crucial characteristics using simulated model specimens. Two constituent materials, i.e. mica tapes and resin layers were set as about 40 and 10 µm in thickness, respectively. EDX analysis shows that the model specimens include silica nanofillers properly dispersed in narrow nanocomposite regions and are suitable for PD initiated BD experiments. It was found that PD initiated BD lifetime was 2.8 times in nanocomposites than in neat epoxy under a rather high electric stress condition.
机译:在承受电应力和散热方面,需要改善用于发电机定子绕组的云母环氧绝缘。 通过环氧纳米复合材料更换环氧树脂是实现这种改进的目的的一种有用方法。 本文旨在评估PD发起的分解(BD)性能作为使用模拟模型标本最重要的特征之一。 两个组成材料,即云母带和树脂层分别设定为约40和10μm的厚度。 EDX分析表明,模型样本包括硅纳米氧化铝,适当地分散在窄纳米复合材料区域中,适用于Pd引发的BD实验。 发现Pd引发的BD寿命在纳米复合材料中的2.8倍,而不是在相当高的电应力条件下纯净的环氧树脂。

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