【2h】

Effect of Al

机译:al.的效果

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摘要

High thermal conductivity insulating dielectrics with good electrical properties have received widespread attention due to the continuous development of power systems and power electronic technologies. In this paper, the effects of differently structured nano alumina fillers on the thermal conductivity and insulating properties of polymer-based composites were studied. It was found that all three types of Al2O3 nano-fillers enhanced the thermal conductivity of the composites, and the thermal conductivity increased more dramatically with increasing filler particle size. It is worth noting that Al2O3 nanowires (NWs) exhibited the most significant improvement in thermal conductivity. The volume resistivity of the composites first increased and then decreased with increasing mass fraction of fillers, and Al2O3 nanoplates (NPLs) showed the most significant improvement in the insulation performance of the composites. The dielectric constants of the composites increased with increasing mass fraction of fillers, while the dielectric losses first decreased and then increased with the same trend, yet the mass fractions of fillers for the three materials were different when the dielectric loss reached a minimum. In addition, all three types of filler increased the AC breakdown strength of the composites, but Al2O3-NPLs showed the most significant improvement on the breakdown performance of the composites.
机译:由于电力系统和电力电子技术的连续发育,具有良好电气性能的高导热性绝缘电介质具有良好的电气性能。本文研究了不同结构化纳米氧化铝填料对聚合物基复合材料导热性和绝缘性能的影响。发现所有三种类型的Al 2 O 3纳米填料增强了复合材料的导热率,并且随着填料粒径的增加,导热率越大。值得注意的是,Al2O3纳米线(NWS)表现出导热率最显着的改善。复合材料的体积电阻率首先增加,然后随着填料的质量分数而降低,Al 2 O 3纳米(NPLS)显示了复合材料的绝缘性能的最显着改善。复合材料的介电常数随着填料的质量分数而增加,而介电损耗首先降低,然后用相同的趋势增加,但是当介电损耗达到最小时,三种材料的填料的质量分数不同。此外,所有三种类型的填料增加了复合材料的AC击穿强度,但Al2O3-NPLS显示了复合材料的击穿性能的最显着改善。

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