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Thermally conductive PP/AlN composites with a 3-D segregated structure

机译:具有3-D隔离结构的导热PP / AlN复合材料

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摘要

PP (Polypropylene)/AlN (Aluminum Nitride) composite particles with a structure of PP core and AlN shell were prepared by mechanical grinding a mixture of PP particles and AlN powder in a mortar. Thermally conductive PP/AlN composites with a 3-D segregated structure were fabricated by sintering the composite particles with a core-shell structure. The PP/AlN composites were characterized by optical microscopy and scanning electron microscopy. It was found that the AlN particles were selectively localized at the interface among the PP particles in the composites leading to enhancement in the Thermal Conductivity (TC) of the composites. The composites fabricated by mechanical grinding show higher TC values than those fabricated by solution mixing and melt mixing methods. In addition, the TC data of the composites were correlated with Agari's model. Both SEM observations at a high magnification and TC measurements of the PP/AlN composites revealed that only a small amount of the fine AlN particles form continuous thermal conductive paths at the interfaces due to the intermixing between the PP and AlN particles. (C) 2015 Published by Elsevier Ltd.
机译:通过在研钵中机械研磨PP颗粒和AlN粉末的混合物来制备具有PP核和AlN壳结构的PP(聚丙烯)/ AlN(氮化铝)复合颗粒。通过烧结具有核-壳结构的复合颗粒,制备了具有3-D分离结构的导热PP / AlN复合材料。通过光学显微镜和扫描电子显微镜对PP / AlN复合材料进行了表征。发现AlN颗粒选择性地定位在复合材料中的PP颗粒之间的界面处,从而导致复合材料的导热率(TC)的提高。通过机械研磨制成的复合材料比通过溶液混合和熔融混合方法制成的复合材料显示更高的TC值。此外,复合材料的TC数据与Agari模型相关。高倍率的SEM观察和PP / AlN复合材料的TC测量均表明,由于PP和AlN颗粒之间的混合,只有少量的细AlN颗粒在界面处形成连续的导热路径。 (C)2015年由Elsevier Ltd.出版

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