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High Thermal Conductivity and Anisotropy Values of Aligned Graphite Flakes/Copper Foil Composites

机译:取向石墨薄片/铜箔复合材料的高导热系数和各向异性值

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摘要

Much attention has been paid to graphite flakes/copper (GFs/Cu) composites for thermal management due to their remarkable thermal properties. Most studies focus on the interface interaction between GFs and Cu in composites. However, controlling the orientation of GFs still remains a challenge. Herein, we report a reliable method to ensure consistent orientation of GFs in the composites. Firstly, the disorder GFs were well arranged on the surface of copper foil by tape casting process in the casting machine. Then highly aligned GFs/Cu composites were fabricated by hot pressing process in a vacuum hot-pressing furnace, with the volume fraction of graphite from 30% to 70%. The SEM images show that the obtained GFs/Cu composites presented a layer-by-layer structure or network structure with a different content of GFs. The thermal conductivity of GFs/Cu composites exhibited an extreme anisotropy due to the highly aligned GFs. The ultrahigh thermal conductivity of GFs/Cu composites with 70 vol% GFs reached 741 W/(m·K), while through-plane thermal conductivity was just 42 W/(m·K). The alignment of GFs and interfacial thermal resistance were deeply analyzed and a thermal conductivity model for GFs/Cu composites was established. Our work provides a new idea to significantly enhance the thermal transportation performance of GFs/Cu composites by well controlled alignment of GFs in Cu matrix.
机译:由于石墨薄片/铜(GFs / Cu)复合材料具有出色的热性能,因此已经引起了人们的广泛关注。大多数研究集中在复合材料中GF和Cu之间的界面相互作用。但是,控制GF的方向仍然是一个挑战。本文中,我们报告了一种可靠的方法,可确保复合材料中GF的取向一致。首先,通过流延机在铸造机中将无序GFs良好地排列在铜箔的表面上。然后在真空热压炉中通过热压工艺制备高度取向的GFs / Cu复合材料,石墨的体积分数为30%至70%。 SEM图像表明,所获得的GFs / Cu复合材料呈现出不同含量的GFs的逐层结构或网络结构。 GFs / Cu复合材料的热导率由于高度对齐的GFs而表现出极大的各向异性。 GFs / Cu含量为70vol%的GFs / Cu复合材料的超高导热率达到741 W /(m·K),而全平面的导热率仅为42 W /(m·K)。深入分析了玻璃纤维的排列和界面热阻,建立了玻璃纤维/铜复合材料的导热系数模型。我们的工作提出了一个新的想法,即通过很好地控制GF在Cu基体中的排列,可以显着提高GFs / Cu复合材料的热传输性能。

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