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Dependence of packing fraction and surface area of the particles in the composites made by the combination of aluminum oxide and nitride for improving the thermal conductivity

机译:用氧化铝和氮化物组合制备的复合材料中颗粒的包装级分和表面积的依赖性,以提高导热率

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Aluminum oxide and aluminum nitride with different sizes were used alone or in combination to prepare thermally conductive polymer composites. Particle size can have an influence on the thermal conductivity of composites at the same volume loading, so the composites examined in this study were categorized into two systems. One included composites filled with large-sized aluminum nitride and small-sized aluminum oxide particles. The other included composites filled with large-sized aluminum oxide and small-sized aluminum nitride. The use of these hybrid fillers was found to be effective in increasing the thermal conductivity of the composite, which was probably due to the enhanced connectivity offered by the structuring filler. At total filler content above 53.5 vol.%, the maximum values of both thermal conductivities in the two systems were 3.402 W/mK and 2.842 W/mK, respectively, when the volume ratio of large particles to small particles was 7∶3. This result was represented when the composite was filled with the maximum packing density and the minimum surface area at the same volume content. As such, the proposed thermal model predicted thermal conductivity in good agreement with experimental values.
机译:单独使用单独使用氧化铝和具有不同尺寸的氮化铝,以制备导热聚合物复合材料。粒度可以对同一体积负载的复合材料的导热率产生影响,因此本研究中检查的复合材料分为两个系统。包括填充大型氮化铝和小型氧化铝颗粒的复合材料。另一种包括填充大型氧化铝和小型氮化铝的复合材料。发现这些杂交填料的使用在增加复合材料的导热率方面是有效的,这可能是由于结构化填料提供的增强的连通性。在53.5体积%的总填充物含量下,当大颗粒到小颗粒的大颗粒的体积比为7:3时,两种系统中的热导体的最大值分别为3.402W / mK和2.842W / mK。当复合材料填充有最大填充密度和相同体积含量的最小表面积时,表示该结果。因此,所提出的热模型与实验值良好的吻合预测导热率。

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