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首页> 外文期刊>Diamond and Related Materials >Deposition of graphene-copper composite film by cold spray from particles with graphene grown on copper particles
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Deposition of graphene-copper composite film by cold spray from particles with graphene grown on copper particles

机译:通过在铜颗粒上生长的石墨烯的颗粒通过冷喷雾沉积石墨烯 - 铜复合膜

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摘要

Graphene has been used to improve tribological property due to its extraordinary properties. For graphene composite, obtaining uniformly distributed and less damaged graphene is important for better improvement. In this research, graphene was fabricated on copper particle by thermal chemical vapor deposition to minimize structural damage and obtain uniform distribution. The obtained graphene-coated copper composite particle was deposited by cold spray which is less deteriorative for graphene. The scanning electron microscope images show that graphene appeared to surface of copper particle without any agglomeration. Raman spectrum indicates that mostly monolayer graphene was obtained. Uniform distribution of graphene was observed after the deposition by cold spray. Furthermore, the deposition by cold spray induced neglectable structural damages on graphene. Nevertheless 0.019 wt% of carbon corresponding to graphene was incorporated in the composite film, graphene improved tribological properties in comparison with those of the copper film; the average friction coefficient values were 0.60 and 0.46 for the copper and composite films, respectively, and the calculated specific wear rates of the films were 8.6 x 10-4 and 5.2 x 10-4 mm3/N center dot m for the copper and graphene-copper composite films, respectively. The improved tribological properties resulted from the low shearing and passivation film by the incorporated graphene.
机译:石墨烯因其独特的性能而被用于改善摩擦学性能。对于石墨烯复合材料而言,获得均匀分布且损伤较小的石墨烯对于更好的改善非常重要。本研究采用热化学气相沉积法在铜颗粒上制备石墨烯,以减少结构损伤并获得均匀分布。通过冷喷涂制备了石墨烯包覆铜复合粒子,该粒子对石墨烯的劣化程度较低。扫描电子显微镜图像显示,石墨烯在铜颗粒表面没有任何团聚。拉曼光谱表明,大部分石墨烯是单层的。冷喷涂沉积后石墨烯分布均匀。此外,冷喷涂沉积对石墨烯造成了可忽略的结构损伤。然而,复合膜中加入了0.019 wt%的石墨烯碳,石墨烯的摩擦学性能比铜膜有所改善;铜和复合薄膜的平均摩擦系数分别为0.60和0.46,铜和石墨烯-铜复合薄膜的计算比磨损率分别为8.6 x 10-4和5.2 x 10-4 mm3/N中心点m。石墨烯的低剪切和钝化膜提高了摩擦学性能。

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