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首页> 外文期刊>Energy Conversion & Management >Fabrication of three-dimensional metal-graphene network phase change composite for high thermal conductivity and suppressed subcooling phenomena
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Fabrication of three-dimensional metal-graphene network phase change composite for high thermal conductivity and suppressed subcooling phenomena

机译:具有高导热性和抑制过冷现象的三维金属-石墨烯网络相变复合材料的制备

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摘要

We report the fabrication of a three-dimensional (3D) metal-graphene network-based phase change composite with a tunable size of individual phase change materials under the same amount of metal contents. Mixing the granules of phase change material with metal paste and subsequent hot pressing effectively forms 3D metal networks among phase change materials with a minimal inclusion of metal. Specifically, the formation of a 3D silver network with 6 volume percentages among pure erythritol increases the thermal conductivities of pure erythritol by 2.7-fold, while achieving a heat capacity that is comparable to that of pure erythritol. Decreasing the size of the individual erythritol part with the same metal content significantly suppresses the subcooling phenomena of erythritol by 24 degrees C due to the effectively increased interfacial surface areas for active heterogeneous nucleation. The addition of graphene sheets between the erythritol granules and 3D metal network further enhances the thermal conductivities of phase change composites by 4.7-fold compared to those of pure erythritol. Finally, the stable operation of the 3D metal or metal-graphene network-based phase change composite during repeated melting and solidification cycling revealed the good structural integrity of the fabricated phase change composite.
机译:我们报告了在相同的金属含量下,具有可调尺寸的单个相变材料的三维(3D)金属-石墨烯网络基相变复合材料的制造。将相变材料的颗粒与金属浆混合,然后进行热压,可以有效地在相变材料中形成3D金属网络,而金属含量最少。具体地,在纯赤藓糖醇中具有6体积百分比的3D银网络的形成将纯赤藓糖醇的热导率提高了2.7倍,同时实现了与纯赤藓糖醇相当的热容量。由于有效异相成核的有效界面表面积的增加,减少具有相同金属含量的单个赤藓糖醇零件的尺寸可将赤藓糖醇的过冷现象显着抑制24摄氏度。与纯赤藓糖醇相比,在赤藓糖醇颗粒和3D金属网络之间添加石墨烯片可将相变复合材料的导热率进一步提高4.7倍。最后,在反复熔化和固化循环过程中,基于3D金属或金属-石墨烯网络的相变复合材料的稳定运行表明,所制造的相变复合材料具有良好的结构完整性。

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