首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >High shock resistance and self-healing ability of graphene/nanotwinned Cu nanolayered composites
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High shock resistance and self-healing ability of graphene/nanotwinned Cu nanolayered composites

机译:石墨烯/纳米纤维Cu纳米复合材料的高抗冲击性和自愈合能力

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Graphene/metal matrix composites have attracted intense interest because of superior mechanical properties, while introducing graphene into the nanotwinned metal matrix has been rarely studied. Here, a nanolayered composite is constructed by introducing single-layer graphene sheets into the nanotwinned Cu (nt-Cu) matrix. The shock response of the composite is investigated using molecular dynamics simulations. Compared to nt-Cu and single-crystal Cu, the graphene/nt-Cu composite possesses higher shock resistance and better self-healing ability simultaneously. It is found that the wrinkling of graphene can act as an initiator for rapid nucleation of numerous dislocations in the composite at the impact velocity of 4.5 km/s, while only an elastic wave is observed in the metal matrix under the same conditions. The subsequent propagation of dislocations effectively absorbs the impact force, leading to a rapid decline of shock stresses and particle velocities. There is a synergistic effect between graphene and twin boundaries on increasing the plastic sensitivity of the composite at a higher impact velocity, resulting in the larger dislocation density with higher shock resistance. Moreover, a fast and smooth self-healing process is observed with the propagation of the reflected wave. As graphene cannot be easily perturbed by dislocations due to high in-plane stiffness, the integrity of the crystal lattice in the graphene/nt-Cu composite is slowly degraded with a better self-healing performance. (C) 2020 Elsevier B.V. All rights reserved.
机译:石墨烯/金属基复合材料因其优越的力学性能而引起了人们的极大兴趣,而将石墨烯引入纳米金属基体的研究却很少。在这里,通过在纳米铜(nt-Cu)基体中引入单层石墨烯片来构建纳米层状复合材料。利用分子动力学模拟研究了复合材料的冲击响应。与nt-Cu和单晶Cu相比,石墨烯/nt-Cu复合材料具有更高的抗冲击性和更好的自愈合能力。研究发现,石墨烯的起皱可以在4.5km/s的冲击速度下引发复合材料中大量位错的快速形核,而在相同条件下,在金属基体中只观察到弹性波。随后的位错传播有效地吸收了冲击力,导致冲击应力和粒子速度迅速下降。在较高的冲击速度下,石墨烯和孪晶界之间存在协同效应,提高了复合材料的塑性敏感性,从而使位错密度更大,抗冲击性更强。此外,通过反射波的传播,可以观察到快速而平滑的自愈过程。由于面内刚度高,石墨烯不容易受到位错的扰动,石墨烯/nt-Cu复合材料中晶格的完整性会缓慢退化,并具有更好的自愈性能。(C) 2020爱思唯尔B.V.版权所有。

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