Research on interface modification and electrical tree of PE/MMT composites

X. Chi, Junguo Gao, Jiahui Guo, Guowei Zheng, Xiaohong Zhang
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引用次数: 1

Abstract

The phenomenon of electrical tree in polyethylene affects its service life and application in widely field. Our previous research works have showed that montmorillonite (MMT) introduced can improve electrical tree performance of polyethylene. In the present paper, organic processing methods by using intercalation agent and coupling agent are selected to modify spacing between laminar layers and surface characteristic of nano-montmorillonite. Polyethylene/nano-montmorillonite (PE/MMT) composites are prepared via melting intercalation method, the organic MMT content is 0.5%, 1%, 3%, and 5% in mass fraction respectively. It can be observed that infrared absorbance peaks of PE/MMT reduce by Fourier transform infrared spectrum (FTIR) due to hydrogen bonds formed between organic MMT and PE. The space charge characteristic and electrical tree properties of PE and PE/MMT are investigated. The test results reveal that the interfacial charge peak improved near cathode and internal space charge accumulation decreases obviously in PE/MMT composite. When content of organic montmorillonite is 0.5%, the PE/MMT composite has the minimum length and maximum density of electrical trees. Establish a model which can express the propagation of electrical tree in composite with layered inorganic filler simply, according to the testing results.
PE/MMT复合材料界面改性及电树研究
聚乙烯中的电气树现象影响了其使用寿命和在广泛领域的应用。我们之前的研究工作表明,蒙脱土(MMT)的引入可以改善聚乙烯的导电性能。本文选择了插层剂和偶联剂的有机处理方法来改变纳米蒙脱土的层间距和表面特性。采用熔融插层法制备聚乙烯/纳米蒙脱土(PE/MMT)复合材料,有机MMT的质量分数分别为0.5%、1%、3%和5%。通过傅里叶变换红外光谱(FTIR)可以观察到,由于有机MMT与PE之间形成氢键,PE/MMT的红外吸光度峰降低。研究了PE和PE/MMT的空间电荷特性和电树特性。测试结果表明,PE/MMT复合材料在阴极附近的界面电荷峰得到改善,内部空间电荷积累明显减少。当有机蒙脱土含量为0.5%时,PE/MMT复合材料的电树长度最小,密度最大。根据试验结果,建立了能简单表达层状无机填料复合材料中电树生长的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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