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Effect of Alumina Nanowires on the Thermal Conductivity and Electrical Performance of Epoxy Composites

机译:氧化铝纳米线对环氧复合材料热导率和电性能的影响

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摘要

Alumina nanowires (Al2O3-NWs)/epoxy resin composites have been thoroughly studied due to their excellent insulating and dielectric performance. In particular, understanding the effect of nano-alumina with different morphologies on the dielectric performance of composites is of great significance. In this study, Al2O3-NWs with lengths of approximately 100 nm and diameters of approximately 5 nm were prepared and blended with anepoxy resin to form composites, and the effect of the mass fraction of fillers on the thermal conductivity of the composites was investigated. Specifically, the effect of alumina fillers with ananowire structure on the insulating and dielectric performance and breakdown strength of the epoxy composites were analyzed. The influence principle of the interfacial effect and heat accumulation on the dielectric and insulating properties of the composites were described. The results demonstrated that the thermal conductivity of Al2O3-NWs/epoxy resin composites was higher than that of the bare epoxy resin. The thermal conductivity of Al2O3-NWs/epoxy resin composites increased with increasing mass fraction of fillers. When the mass fraction of fillers was 10%, the thermal conductivity of the composite was 134% higher than that of the epoxy resin matrix. The volume resistivity of the composites first increased and then decreased as the mass fraction of fillers increased, while the dielectric constant of the composites increased with increasing mass fraction of fillers and decreasing frequency. The dielectric loss of the composites decreased and then increased as the mass fraction of fillers increased, and it increased with increasing frequency. Additionally, the alternating current breakdown strength of the composites first increased and then decreased withincreasingmass fraction of fillers.
机译:由于其优异的绝缘和介电性能,已经彻底研究了氧化铝纳米线(Al 2 O 3 -NWS)/环氧树脂复合材料。特别地,了解纳米氧化铝在复合材料的介电性能下对不同形态的影响具有重要意义。在该研究中,制备长度约为100nm和直径约为5nm的Al 2 O 3 -NW,并与苯氧基树脂混合以形成复合材料,并研究了填料的质量分数对复合材料的导热率的影响。具体地,分析了氧化铝填料对厌氧结构对氧化环复合材料的绝缘和介电性能和击穿强度的影响。描述了界面效应的影响原理和复合材料介质和绝缘性能的热量积累。结果表明,Al2O3-NWS /环氧树脂复合材料的导热率高于裸环氧树脂的导热率。 Al2O3-NWS /环氧树脂复合材料的导热率随着填料的质量分数而增加。当填料的质量分数为10%时,复合材料的导热率高于环氧树脂基质的热导率为134%。随着填料的质量分数增加,复合材料的体积电阻率更加增加,然后随着填料的质量分数而降低,而复合材料的介电常数随着填充物的质量分数和频率降低而增加。随着填料的质量分数增加,复合材料的介电损耗降低,然后随着频率的增加而增加。另外,复合材料的交流击穿强度首先增加,然后降低了填料的额外量。

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