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Graphene-like carbon nanosheet/copper composite with combined performance designed by pyrolyzing trimesic acid@copper formate

机译:石墨烯碳纳米晶型/铜复合材料,采用热解铜甲酸铜酸酯设计的组合性能

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Graphene or graphene-like carbon nanosheet (GNS) with excellent properties presents great potential to improve substantially the combined properties of copper matrix composites. However, it is still a great challenge to develop new methods for the preparation of GNS-reinforced copper composites. In this work, high-strength, high-conductivity and lowthermal expansion GNS/Cu composites were prepared by pyrolyzing trimesic acid@copper formate and spark plasma sintering. Both the volume fraction and the order degree of carbon in GNS/Cu composites were improved by the introduction of trimesic acid. The highest tensile and compressive yield strength of GNS/Cu composites are 542 MPa and 637 MPa, respectively. After hot-rolling process, the plastic deformation and the electrical conductivity of the composites are improved effectively and reach 9% and 86.2% IACS, respectively;the average coefficient of thermal expansion (CTE) of the composite is as low as 12.4x10-6 °C-1, which is only 72.9% of pure Cu material. This work provides an effective solution for the design of the GNS/Cu composites with excellent combined performance.
机译:具有优异性质的石墨烯或石墨烯碳纳米片(GNS)具有巨大的潜力,以提高铜基质复合材料的基本上的组合性能。然而,为制备GNS增强铜复合材料制备新方法仍然是一项巨大挑战。在这项工作中,通过热解铜甲酸和火花等离子体烧结来制备高强度,高导电率和低热膨胀GNS / Cu复合材料。通过引入微三元酸,改善了GNS / Cu复合材料中的体积分数和碳的顺序度。 GNS / Cu复合材料的最高拉伸和压缩屈服强度分别为542MPa和637MPa。在热轧过程之后,复合材料的塑性变形和电导率分别提高,分别达到9%和86.2%的IACS;复合材料的平均热膨胀系数(CTE)低至12.4×10-6 °C-1,仅为72.9%的纯Cu材料。这项工作为设计具有出色的组合性能的GNS / Cu复合材料提供了有效的解决方案。

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