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Space charge and dielectric behavior of epoxy composite with SiO2-Al2O3 nano-micro fillers at varied temperatures

机译:SiO2-Al2O3纳米微填料在不同温度下环氧树脂复合材料的空间电荷和介电性能

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摘要

Dielectric properties at high temperatures are important for epoxy resin used as insulation and package materials operating at varied temperatures in electrical apparatuses and electronic devices. We investigated the dielectric properties of epoxy resin and its composite with SiO2-Al2O3 nano-micro fillers at varied temperatures by combined study of space charge distribution, complex dielectric permittivity and conduction current between 20 and 200 degrees C. The results show that space charge behavior in epoxy resin and its composite is dominated by electronic charge transport below the glass transition temperature T-g and by ion transport above T-g. The real and imaginary parts of complex permittivity increase to extremely high values at temperatures above T-g. The conduction current increases with a rise in temperature and shows an obvious transition from electronic charge transport below T-g to ionic charge transport above T-g. The composite shows weaker space charge accumulation, lower complex permittivity and conduction current than EP above T-g. Combined analysis of the results indicate that ion accumulation and transport dominate the dielectric properties of epoxy resin and its composite at high temperatures above T-g. The nano-micro fillers in the composite can significantly suppress the ions transport and accumulation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:高温下的介电性能对于在电气设备和电子设备中用作在不同温度下工作的绝缘材料和封装材料的环氧树脂很重要。通过对空间电荷分布,复介电常数和20至200摄氏度之间的导电电流的综合研究,我们研究了环氧树脂及其与SiO2-Al2O3纳米微填料的复合材料在不同温度下的介电性能。结果表明,空间电荷行为环氧树脂及其复合材料中的离子传递主要由低于玻璃化转变温度Tg的电荷传输和高于Tg的离子传输主导。在高于T-g的温度下,复介电常数的实部和虚部会增加到极高的值。传导电流随温度的升高而增加,并显示出从T-g以下的电子电荷迁移到T-g以上的离子电荷迁移的明显过渡。该复合材料比T-g以上的EP表现出较弱的空间电荷积累,较低的复介电常数和传导电流。对结果的综合分析表明,在T-g以上的高温下,离子的累积和输运控制着环氧树脂及其复合材料的介电性能。复合材料中的纳米微填料可以显着抑制离子的传输和积累。 (C)2017 Elsevier Ltd.保留所有权利。

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