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Role of Micro-nano Hexagonal Boron Nitride Coordination on Thermal Conductivity and Breakdown Strength of Epoxy Composites

机译:微纳米六方硼氮化物配位对环氧复合材料的热导率和击穿强度的作用

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Epoxy resin (EP) has been used as insulating material in power electronic transformer (PET), while low thermal conductivity of EP limits the heat dissipation efficiency of PET. Role of Micro-nano hexagonal boron nitride coordination on thermal conductivity and breakdown strength of epoxy composites was explored. A thermal conductivity of 0.544 W/(m·K) was obtained for 10 wt% BN/EP micro composites, increased by 149.5% compared with pristine epoxy. In addition, the specimen with a dual doping of 10 wt% h-BN and 5 wt% nano filler exhibited both improved thermal conductivity of 0.527 W/(m·K) and breakdown strength of 118.3 kV/mm. It is found that micro-BN could effectively increase the thermal conductivity since efficient heat transform path would be built inside epoxy matrix. Meanwhile, nano-BN would bring in independent interfacial regions that capture carriers at low filler content. Based on the coordination of micro-nano particles, the thermal conductivity and breakdown strength can thus be enhanced simultaneously.
机译:环氧树脂(EP)已被用作电力电子变压器(PET)中的绝缘材料,而EP的低导热率限制了PET的散热效率。探讨了微纳米六边形氮化硼与环氧复合材料热导率和击穿强度的作用。得到10wt%BN / EP微复合材料0.544W /(m·k)的导热率,与原始环氧树脂相比增加149.5%。另外,具有10wt%H-Bn和5wt%纳米填料的双掺杂的样品表现出0.527W /(m·k)的改善的导热率和118.3kV / mm的击穿强度。发现微bn可以有效地增加导热率,​​因为高效的热变换路径将内置在环氧基质内。同时,纳米BN将引入在低填料含量下捕获载体的独立界面区域。基于微纳米颗粒的配位,因此可以同时增强导热率和击穿强度。

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