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Polymer composite with enhanced thermal conductivity and mechanical strength through orientation manipulating of BN

机译:通过BN的取向处理具有增强的导热性和机械强度的聚合物复合材料

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摘要

Herein, we report a fabrication of epoxy resin oriented BN composites via a facile hot-pressing strategy. Benefitting from the force exerted vertically on the BN platelets, a well-ordered BN microstructure in the composites has been achieved, which renders the prepared composites an elevated thermal conductivity up to 6.09 W m(-1)K(-1) at 50 wt% loading, while it is only 2.44 W m(-1)K(-1) for epoxy resin/random BN composites. In addition, the composites show an enhanced tensile strength (31.79 MPa) and Young's modulus (4.63 GPa) when comparing with epoxy resin/random BN composites at the same 50 wt% loading (21.21 MPa and 1.48 GPa). We attribute the improved thermal conductivity to the well-aligned BN platelets in higher heat conduction direction based on the anisotropic thermal conduction ability of BN. The enhanced mechanical properties are ascribed to the increased friction area along the tensile in-plane direction and the decreased defects which are easily incorporated during the fabrication process. This study sheds a light for exploring future thermal management materials to meet the increasing heat dissipation demands. (C) 2018 Published by Elsevier Ltd.
机译:在本文中,我们报告了通过简便的热压策略制造环氧树脂取向的BN复合材料的过程。得益于垂直施加在BN血小板上的力,复合材料中的BN微观结构井然有序,在50 wt%的条件下,制备的复合材料的导热系数高达6.09 W m(-1)K(-1) %负载,而环氧树脂/无规BN复合材料仅为2.44 W m(-1)K(-1)。另外,当在相同的50 wt%的载荷(21.21 MPa和1.48 GPa)下与环氧树脂/无规BN复合材料相比时,复合材料显示出更高的拉伸强度(31.79 MPa)和杨氏模量(4.63 GPa)。我们基于BN的各向异性热传导能力,将提高的热导率归因于在较高的热传导方向上排列良好的BN血小板。增强的机械性能归因于沿拉伸面内方向的增加的摩擦面积和减少的缺陷,这些缺陷在制造过程中容易合并。这项研究为探索未来的热管理材料以满足不断增长的散热需求提供了亮光。 (C)2018由Elsevier Ltd.发布

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