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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Construction of a 3D aluminum flake framework with a sponge template to prepare thermally conductive polymer composites
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Construction of a 3D aluminum flake framework with a sponge template to prepare thermally conductive polymer composites

机译:用海绵模板构建3D铝剥落框架,制备导热聚合物复合材料

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摘要

Ceramic-based polymer composites with high thermal conductivity and electrically insulation have been widely used in modern electrical systems for thermal management applications. Compared with ceramic materials, metals usually exhibit better heat conduction performance. However, the preparation of insulating metal-based polymer composites with high thermal conductivity enhancement efficiency is still challenging. In this study, using PU sponge-supported 3D interconnected aluminum (Al) flakes, a novel advanced polymer composite with high thermal conductivity and desired electrical insulation is reported. The PDMS/PU@Al composites exhibit a thermal conductivity of 1.6 W m(-1) K-1 and a thermal conductivity enhancement efficiency of 53 at a low Al flake loading of 14 vol%. Most notably, the thermal conductivity enhancement efficiency is higher than that reported in previous literature. In addition, due to the coating of a nano-SiO2 surface layer, the PDMS/PU@Al composites are still highly insulating with a volume electrical resistivity of about 10(10) omega m(-1). The Al flake networks exhibit low thermal resistance due to the effective adhesion of the adjacent nanosheets via polyvinyl alcohol (PVA) adhesives and heat flux mainly transferred through the continuous Al flake framework as demonstrated by finite element simulations. These results are very promising in metal-based polymer composites with high thermal conductivity enhancement efficiency. Moreover, the strong thermal management capability of the PDMS/PU@Al composites was demonstrated with an infrared thermal imager, which shows strong potential in thermal management applications.
机译:陶瓷基聚合物复合材料具有高导热性和电绝缘性,在现代电气系统中被广泛用于热管理应用。与陶瓷材料相比,金属通常表现出更好的导热性能。然而,制备具有高导热系数增强效率的绝缘金属基聚合物复合材料仍具有挑战性。在本研究中,使用聚氨酯海绵支撑的三维互连铝(Al)薄片,报道了一种具有高导热性和理想电绝缘性的新型高级聚合物复合材料。PDMS/PU@Al复合材料的导热系数为1.6 W m(-1)K-1,在14 vol%的低铝片负载下,导热系数增强效率为53。最值得注意的是,热导率增强效率高于以往文献中的报道。此外,由于纳米SiO2表面层的涂层,PDMS/PU@Al复合材料仍然具有高度绝缘性,体积电阻率约为10(10)Ωm(-1)。有限元模拟表明,由于相邻纳米片通过聚乙烯醇(PVA)粘合剂有效粘附,且热流主要通过连续铝片框架传递,因此铝片网络表现出较低的热阻。这些结果在具有高导热系数增强效率的金属基聚合物复合材料中是非常有前景的。此外,PDMS强大的热管理能力/PU@Al利用红外热像仪对复合材料进行了演示,显示了其在热管理应用中的巨大潜力。

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