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Effect of Nano-Alumina on Electric Tree Growth in SiR Nanocomposites

机译:纳米氧化铝对SiR纳米复合材料电树生长的影响

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Nowadays, nano technology is one of the new approaches used in enhancing the strength of polymeric insulating material. This paper presents the process of electric tree growth within 30 min after tree inception (TTV) in unfilled Silicone Rubber (SiR) as well as in SiR/Alumina nanocomposites up to 3 vol.%. Once TIV occurred, fixed 8 kVrms, 50 Hz Ac supply voltage was stressed to the specimen in order to monitor the electrical tree growth process within this period of time. The result shows that the tree growth pattern appears regularly in Branch tree type during the growth process for unfilled SiR while Bush tree type can be observed more frequently by increasing nano-alumina up to 2 vol.%. However at 3 vol.%, the fastest electrical tree growth can be observed and most of the trees tend to appear in Pine Branch tree pattern due to the slight agglomeration in filler dispersion. The result shows that, up to 2 vol.% for homogenous dispersion of filler, nano alumina can act as a resistance of electrical growth but further filler increasing up to 3 vol.% lead to the worst propagation rate.
机译:如今,纳米技术是用于增强聚合物绝缘材料强度的新方法之一。本文介绍了在未填充硅橡胶(SiR)以及高达3 vol。%的SiR /氧化铝纳米复合材料中,树生长(TTV)后30分钟内电树的生长过程。一旦发生TIV,将固定的8 kVrms,50 Hz交流电源电压施加到样品上,以监控这段时间内的电树生长过程。结果表明,在未填充的SiR的生长过程中,树的生长模式以分支树型规律出现,而通过增加纳米氧化铝至多2 vol。%可以更频繁地观察到灌木树型。但是,在3%(体积)下,可以观察到最快的电树生长,并且由于填料分散的轻微团聚,大多数树倾向于以松枝树的形式出现。结果表明,对于均匀分散的填料,高达2 vol。%的纳米氧化铝可以起到电生长的作用,但是进一步增加填料达到3 vol。%则导致最差的传播速率。

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