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Anisotropic thermal conductive properties of cigarette filter-templated graphene/epoxy composites

机译:卷烟滤嘴模板的石墨烯/环氧树脂复合材料的各向异性导热性能

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Herein, a cigarette filter-templated graphene/epoxy composite was prepared with enhanced thermal conductive properties. The through-plane thermal conductivity of the epoxy composite was up to 1.2 W mK?1, which was 4 times that of it in the in-plane (0.298 W mK?1) after only 5 filtration cycles. The thermal conductive anisotropy and improvement in the through-plane thermal conductivity of the epoxy composite were attributed to the particular structure of cigarette filter-templated graphene in the epoxy matrix. The unique structure formed effective conductive pathways in the composite to improve the thermal transportation properties. The excellent thermal transportation properties allow the epoxy composite to be used as an efficient heat dissipation material for thermal management applications.
机译:在此,制备了具有增强的导热性能的香烟过滤嘴模板的石墨烯/环氧树脂复合材料。环氧复合材料的贯穿面热导率高达1.2 W mK ?1 ,是面内导热率的0.2倍(0.298 W mK <仅5个过滤循环后就可以看到<> ?1 )。环氧复合材料的导热各向异性和通面导热性的提高归因于环氧基质中香烟过滤器模板石墨烯的特殊结构。独特的结构在复合材料中形成有效的导电路径,以改善热传输性能。优异的热传输性能使环氧复合材料可用作热管理应用的高效散热材料。

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