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Effective Assembly of Nano-Ceramic Materials for High and Anisotropic Thermal Conductivity in a Polymer Composite

机译:在聚合物复合物中有效组装高导热各向异性的纳米陶瓷材料

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摘要

Recently, anisotropic heat dissipation and its management have drawn attention as a promising technique for highly integrated electrical devices. Among many potentially challenging materials such as carbon nanotube, graphene, metal particles, and inorganic ceramics commonly used for high thermally conductive fillers in a composite form, nanoscale ceramic fillers are considered ideal candidates due to their thermal conductivity, electrical insulation, and low thermal expansion coefficient. However, enhancing the thermal conductivity of a randomly dispersed ceramic-polymer composite is limited by its discontinuous filler contact and thermal expansion coefficient mismatch. Thus, recent research has focused on how to assemble and generate highly networked filler contacts to make effective pathways for heat flow, with minimized concentration of the filler in the composite. In this review, we will introduce several essential strategies to assemble fillers with a two- or three-dimensional networked composite for highly enhanced anisotropic heat dissipation. Moreover, this review elucidates filler alignment effects compared to randomly dispersed ceramic composites.
机译:近年来,各向异性散热及其管理作为高度集成的电气设备的一种有前途的技术引起了人们的注意。通常用于复合形式的高导热填料的许多潜在挑战性材料,例如碳纳米管,石墨烯,金属颗粒和无机陶瓷,由于其导热性,电绝缘性和低热膨胀性,纳米级陶瓷填料被认为是理想的候选材料系数。然而,增强无规分散的陶瓷-聚合物复合材料的导热性受到其不连续的填料接触和热膨胀系数失配的限制。因此,最近的研究集中在如何组装和生成高度网络化的填料触点上,以形成有效的热流通道,同时使填料在复合物中的浓度降至最低。在这篇综述中,我们将介绍几种基本的策略,以将填料与二维或三维网络复合材料组装在一起,以大大提高各向异性的散热能力。而且,与无规分散的陶瓷复合材料相比,本综述阐明了填料的排列效果。

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