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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Deformation behaviors of three-dimensional graphene honeycombs under out-of-plane compression: Atomistic simulations and predictive modeling
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Deformation behaviors of three-dimensional graphene honeycombs under out-of-plane compression: Atomistic simulations and predictive modeling

机译:平面外压缩作用下三维石墨烯蜂窝的变形行为:原子模拟和预测模型

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摘要

Combining atomistic simulations and continuum modeling, a comprehensive study of the out-of-plane compressive deformation behaviors of equilateral three-dimensional (3D) graphene honeycombs was performed. It was demonstrated that under out-of-plane compression, the honeycomb exhibits two critical deformation events, i.e., elastic mechanical instability (including elastic buckling and structural transformation) and inelastic structural collapse. The above events were shown to be strongly dependent on the honeycomb cell size and affected by the local atomic bonding at the cell junction. By treating the 3D graphene honeycomb as a continuum cellular solid, and accounting for the structural heterogeneity and constraint at the junction, a set of analytical models were developed to accurately predict the threshold stresses corresponding to the onset of those deformation events. The present study elucidates key structure-property relationships of 3D graphene honeycombs under out-of-plane compression, and provides a comprehensive theoretical framework to predictively analyze their deformation responses, and more generally, offers critical new knowledge for the rational bottom-up design of 3D networks of two-dimensional nanomaterials.
机译:结合原子模拟和连续模型,对等边三维(3D)石墨烯蜂窝的平面外压缩变形行为进行了全面研究。已经证明,在面外压缩下,蜂窝表现出两个关键的变形事件,即弹性机械不稳定性(包括弹性屈曲和结构变形)和非弹性结构塌陷。以上事件显示出强烈依赖于蜂窝状细胞的大小,并受到细胞交界处局部原子键合的影响。通过将3D石墨烯蜂窝视为连续的蜂窝状实体,并考虑到结点处的结构异质性和约束,开发了一套分析模型来准确预测与那些变形事件的开始相对应的阈值应力。本研究阐明了平面外压缩作用下3D石墨烯蜂窝的关键结构-性能关系,并提供了一个综合的理论框架来预测性地分析其变形响应,并且更广泛地为合理的自底向上设计提供了关键的新知识。二维纳米材料的3D网络。

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