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DC and High Frequency Dielectric Breakdown Characteristics of PP/Al2O3Nanocomposites

机译:PP / Al 2 O 3 纳米复合材料的直流和高频介电击穿特性

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Nanofillers have significant effect on dielectric properties for polymeric materials. Pure PP and its nanocomposites films with different filler contents were fabricated to conduct dc and high frequency breakdown experiment. The result shows that, the dc breakdown strength reaches the maximum value at 1wt.%, while which occurs at filler content of 7wt.% for high frequency breakdown strength Erms. Combined with conductivity, trap, dielectric loss and thermal conductivity characteristics, it is concluded that the dc breakdown is closely related to the deep trap energy. The equivalent electric field changed by deep traps is helpful for blocking charge injection, and the enhanced trapping effect can restrict the carriers’ migration and multiplication process. Under the effect of the high frequency electrical stress, heating value per unit volume is higher than that under dc voltage. The combined electrical-thermal breakdown mechanism is considered under high frequency voltage. Nanofillers change both the electrical and thermal properties. The increase of thermal conductivity weakens the local temperature rise, causing the shift of the optimal nano-doping content.
机译:纳米填料对聚合物材料的介电性能具有显着影响。制造具有不同填料内容物的纯PP及其纳米复合材料薄膜以进行DC和高频击穿实验。结果表明,直流击穿强度达到1wt的最大值。%,而在填料含量为7wt的填充物含量。%用于高频击穿强度ERMs。结合电导率,陷阱,介电损耗和导热性特性,得出结论是直流击穿与深阱能量密切相关。深度陷阱改变的等效电场有助于阻塞电荷注入,增强型捕获效果可以限制载波的迁移和乘法过程。在高频电应力的影响下,每单位体积的加热值高于DC电压下的加热值。在高频电压下考虑组合的电热击穿机构。纳米填充物改变电气和热性能。导热性的增加削弱了局部温升,导致最佳纳米掺杂含量的偏移。

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