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首页> 外文期刊>Diamond and Related Materials >Effects of graphite flake size on the properties of aligned graphene nanoplatelets covered graphite flakes/aluminum composites
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Effects of graphite flake size on the properties of aligned graphene nanoplatelets covered graphite flakes/aluminum composites

机译:石墨薄片大小对对齐石墨烯纳米薄层性能的影响覆盖石墨薄片/铝复合材料

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摘要

Finding out the effects of graphite (Gr) flake size on the properties of Gr (Graphene Nanoplatelet (GNP))/Al composites will be helpful to design and develop various Gr(GNP)/Al composites which need to meet different application requirements. In this work, thermal conductivity (TC) and flexural strength of Gr/Al and Gr(GNP)/Al composites with different Gr flake size were investigated. Through-plane TC of Gr/Al composites is about 50% of the results predicted by EMA model. However, after introducing GNP to Gr flakes, through-plane TC of Gr(GNP)/ Al composites reaches about 90% of the results predicted by EMA model. When Gr flake size are 150, 500, 850 mu m, respectively, the in-plane TC of Gr/Al composites can be improved by 8.5%, 6.4%, 5.4% after introducing GNP, while the through-plane TC of Gr/Al composites can be improved by 62%, 75%, 83%. So the introduction of GNP to the Gr flake is more effective in improving through-plane TC than in-plane TC. GNP's improvement ratio on the through-plane TC of Gr/Al composites increases with the increase of Gr flake size. Furthermore, as Gr flake size increases, GNP's improvement ratio on the flexural strength of Gr/Al composites increases, which is attributed to the increase of strengthening effect of GNP on the interface region.
机译:研究石墨(Gr)薄片尺寸对Gr(Graphene nanoplate,GNP))/Al复合材料性能的影响,将有助于设计和开发满足不同应用要求的各种Gr(GNP)/Al复合材料。本文研究了不同粒径的Gr/Al和Gr(GNP)/Al复合材料的导热系数和弯曲强度。Gr/Al复合材料的穿透面TC约为EMA模型预测结果的50%。然而,在Gr薄片中引入GNP后,Gr(GNP)/Al复合材料的透过面TC达到EMA模型预测结果的90%左右。当Gr片尺寸分别为150、500、850μm时,引入GNP后,Gr/Al复合材料的面内TC分别提高了8.5%、6.4%、5.4%,而Gr/Al复合材料的面内TC分别提高了62%、75%、83%。因此,在Gr薄片中引入GNP比在平面TC中更有效地改善通过平面TC的性能。Gr/Al复合材料通面TC的GNP改善率随Gr片尺寸的增大而增大。此外,随着石墨薄片尺寸的增加,GNP对石墨/铝复合材料弯曲强度的改善率增加,这是由于GNP对界面区域的强化作用增加。

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