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Electrical Treeing and Morphological Analysis of Epoxy Nanocomposites with Different Concentrations of Silica Nanofillers

机译:不同浓度二氧化硅纳米氧化物的环氧纳米复合物的电子蔬菜和形态学分析

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In high voltage equipments, insulation systems are the most vital parts to prevent any discharges from occurs around the protected systems. However, the discharges in the form of electrical treeing can easily occur when there are existences of impurities, voids or defects in the insulation bulk. This phenomenon can lead to the insulation breakdown when subjected to prolonged electrical stresses. This paper discusses about the effects of silica nanofillers on the electrical treeing growth in epoxy resin. The silica nanofillers were dispersed in epoxy resin matrices homogeneously by using ultrasonication method based on weight percentage (wt %) which the weight percentages used in this study were 0 wt%, 1 wt%, and 3 wt% respectively. The influence of these nanofillers on the electrical tree breakdown resistance was investigated experimentally. The electrical tree data such as tree inception voltage, tree breakdown voltage and tree propagation time were tabulated and appropriate comparative analysis were made and presented. Last but not least, scanning electron microscopy images were captured and discussed based on its dispersion state and also the morphological features of the epoxy nanocomposites. In this study, it was found that the existence of different silica nanofiller concentrations have profound effects on insulation strength and could exhibit significant improvement of tree characteristics of epoxy nanocomposites.
机译:在高压设备中,绝缘系统是最重要的部件,以防止受保护系统周围发生的任何放电。然而,当存在杂质,绝缘体中存在的杂质,空隙或缺陷时,可以容易地发生电子树形式的放电。当经受长时间的电应力时,这种现象可能导致绝缘击穿。本文讨论了二氧化硅纳米填料对环氧树脂电岭生长的影响。通过使用基于重量百分比(WT%)的超声率法均匀地分散在环氧树脂基质中,该研究中使用的重量百分比分别为0wt%,1wt%和3wt%。实验研究了这些纳米填料对电气树击穿电阻的影响。诸如树初始电压,树击穿电压和树传播时间的电气树数据被制成制成制表和呈现适当的比较分析。最后但尤其是捕获和讨论扫描电子显微镜图像,并基于其分散状态讨论,也是环氧纳米复合材料的形态学特征。在这项研究中,发现存在不同的二氧化硅纳米填充物浓度对绝缘强度具有深远的影响,并且可以表现出环氧纳米复合材料的树木特征的显着提高。

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