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Breaking Through Bottlenecks for Thermally Conductive Polymer Composites: A Perspective for Intrinsic Thermal Conductivity, Interfacial Thermal Resistance and Theoretics

机译:通过用于导热聚合物复合材料的瓶颈断开:具有内在导热性,界面热阻和理论的透视图

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Rapid development of energy, electrical and electronic technologies has put forward higher requirements for the thermal conductivities of polymers and their composites. However, the thermal conductivity coefficient (位) values of prepared thermally conductive polymer composites are still difficult to achieve expectations, which has become the bottleneck in the fields of thermally conductive polymer composites. Aimed at that, based on the accumulation of the previous research works by related researchers and our research group, this paper proposes three possible directions for breaking through the bottlenecks: (1) preparing and synthesizing intrinsically thermally conductive polymers, (2) reducing the interfacial thermal resistance in thermally conductive polymer composites, and (3) establishing suitable thermal conduction models and studying inner thermal conduction mechanism to guide experimental optimization. Also, the future development trends of the three above-mentioned directions are foreseen, hoping to provide certain basis and guidance for the preparation, researches and development of thermally conductive polymers and their composites.
机译:能量,电气和电子技术的快速发展已经提出了对聚合物和复合材料的热导体的更高要求。然而,制备的导热性聚合物复合材料的导热系数(位)值仍然难以实现预期,这已成为导热聚合物复合材料领域的瓶颈。根据相关研究人员和研究组的基础上以前的研究作品的积累,本文提出了三种可能的方向,用于突破瓶颈:(1)制备和合成本质上导热聚合物,(2)降低界面导热聚合物复合材料中的热阻,和(3)建立合适的热传导模型,研究内部热传导机制,以引导实验优化。此外,预计上述三个方向的未来发展趋势,希望为制备,研究和开发导热聚合物及其复合材料提供一定的基础和指导。

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