The Influence of Positive Temperature Coefficient Material on the DC Electric Field within Epoxy Composites

Chenyuan Teng, Yuanxiang Zhou, Ling Zhang, Yunxiao Zhang, Xuewei Wang, Zixia Cheng, Meng Huang
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引用次数: 2

Abstract

Negative temperature (NT) coefficient electrical resistivity of insulating materials causes the distortion of DC electric field, increasing the design and manufacture difficulty of HVDC equipment. The ceramic with positive temperature coefficient (PTC) electrical resistivity was doped into epoxy resin to weaken its temperature dependence of electrical resistivity (0~35 wt%). The electric field and temperature distribution under temperature gradient were simulated. The PTC effect of fillers is able to mitigate the distortion of electric field under temperature gradient, which is through the synergistic optimization of both electrical resistivity-temperature characteristic and thermal conductivity. The optimization of electric field distribution within insulation via BT60/epoxy composites has potential to be used in HVDC electrical equipment.
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正温度系数材料对环氧复合材料直流电场的影响
绝缘材料的负温度(NT)电阻率系数引起直流电场畸变,增加了高压直流设备的设计和制造难度。将电阻率为正温度系数(PTC)的陶瓷掺入环氧树脂中,以减弱其电阻率的温度依赖性(0~35 wt%)。模拟了温度梯度下的电场和温度分布。填料的PTC效应是通过电阻率-温度特性和导热系数的协同优化来缓解温度梯度下电场的畸变。利用BT60/环氧复合材料优化绝缘层内电场分布,具有应用于高压直流电气设备的潜力。
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