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Chirality and grain boundary effects on indentation mechanical properties of graphene coated on nickel foil

机译:镍箔涂布石墨烯压痕力学性能的手性和晶界影响

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摘要

We investigate chirality and grain boundary (GB) effects on indentation mechanical properties of graphene coated on nickel foil using molecular dynamics simulations. The models of graphene with different chirality angles, different numbers of layers and tilt GBs were established. It was found that the chirality angle of few-layer graphene had a significant effect on the load bearing capacity of graphene/nickel systems, and this turns out to be more significant when the number of layers is greater than one. The enhancement to the contact stiffness, elastic capacity and the load bearing capacity of graphene with tilt GBs was lower than that of pristine graphene.
机译:我们使用分子动力学模拟研究了对镍箔上的石墨烯的压痕力学性能的对手性和晶界(GB)的影响。 建立了具有不同性行为角度,不同数量的层和倾斜GBS的石墨烯模型。 发现少数层石墨烯的手性角对石墨烯/镍系统的承载能力具有显着影响,当层数大于1时,这变出了更大的意义。 具有倾斜GBS的接触刚度,弹性容量和石墨烯的承载能力的增强低于原始石墨烯。

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