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Graphene-copper composite with micro-layered grains and ultrahigh strength

机译:具有微层晶粒和超高强度的石墨烯-铜复合材料

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摘要

Graphene with ultrahigh intrinsic strength and excellent thermal physical properties has the potential to be used as the reinforcement of many kinds of composites. Here, we show that very high tensile strength can be obtained in the copper matrix composite reinforced by reduced graphene oxide (RGO) when micro-layered structure is achieved. RGO-Cu powder with micro-layered structure is fabricated from the reduction of the micro-layered graphene oxide (GO) and Cu(OH)2 composite sheets, and RGO-Cu composites are sintered by spark plasma sintering process. The tensile strength of the 5 vol.% RGO-Cu composite is as high as 608 MPa, which is more than three times higher than that of the Cu matrix. The apparent strengthening efficiency of RGO in the 2.5 vol.% RGO-Cu composite is as high as 110, even higher than that of carbon nanotube, multilayer graphene, carbon nano fiber and RGO in the copper matrix composites produced by conventional MLM method. The excellent tensile and compressive strengths, high hardness and good electrical conductivity are obtained simultaneously in the RGO-Cu composites. The results shown in the present study provide an effective method to design graphene based composites with layered structure and high performance.
机译:具有极高的固有强度和优异的热物理性能的石墨烯有可能被用作多种复合材料的增强材料。在这里,我们表明,当获得微层结构时,在还原型氧化石墨烯(RGO)增强的铜基复合材料中可以获得非常高的拉伸强度。通过还原微层氧化石墨烯(GO)和Cu(OH)2复合片,制备了具有微层结构的RGO-Cu粉末,并通过火花等离子体烧结工艺对RGO-Cu复合材料进行了烧结。 5%(体积)RGO-Cu复合材料的抗拉强度高达608 MPa,是Cu基体的三倍以上。 2.5%(体积)RGO-Cu复合材料中RGO的表观强化效率高达110,甚至高于传统MLM方法生产的铜基复合材料中的碳纳米管,多层石墨烯,碳纳米纤维和RGO。 RGO-Cu复合材料可同时获得出色的拉伸和压缩强度,高硬度和良好的导电性。本研究显示的结果为设计具有分层结构和高性能的石墨烯基复合材料提供了一种有效的方法。

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