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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Buckling behaviors of metal nanowires encapsulating carbon nanotubes by considering surface/interface effects from a refined beam model
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Buckling behaviors of metal nanowires encapsulating carbon nanotubes by considering surface/interface effects from a refined beam model

机译:通过考虑精制光束模型的表面/接口效应来封装碳纳米管的金属纳米线的屈曲行为

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We develop a refined beam model to describe the buckling characteristics of hollow metal nanowires encapsulating carbon nanotubes (NWs@CNTs), where the interfacial van der Waals (vdW) interaction, interfacial shear stress as well as surface effect are taken into consideration. The analytical expressions for cohesive energies of the vdW interaction between carbon nanotubes (CNTs) and hollow nanowires are obtained through continuum modeling. The interfacial shear coefficients for NWs@CNTs with CNTs of different diameters and nanowires of different lattice orientations are derived by molecular dynamics simulations. The surface effects of nanowires are addressed by a function of the bulk surface energy density and surface relaxation parameter. The present results show that all the aforementioned three factors play key roles in the buckling behaviors of NWs@CNTs. In particular, the competition between CNTs and nanowires owing to the coupling effect of the three factors dominates their buckling patterns. This study may provide a theoretical support to prepare vertically aligned CNT arrays with nanoscale conformal coatings and to understand the stability and reliability of CNT reinforced composites. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们开发一种精炼光束模型,以描述封装碳纳米管(NWS @ CNT)的中空金属纳米线的屈曲特性,其中考虑了界面范德瓦尔斯(VDW)相互作用,界面剪切应力以及表面效应。通过连续型建模获得碳纳米管(CNT)和中空纳米线之间VDW相互作用的粘合能量的分析表达。通过分子动力学模拟导出具有不同晶格取向的不同直径和纳米线CNT的NWS @ CNT的界面剪切系数。纳米线的表面效应通过堆积表面能量密度和表面松弛参数的函数来解决。本结果表明,所有上述三个因素都在NWS @ CNT的屈曲行为中发挥关键作用。特别是,由于三个因素的耦合效应,CNT和纳米线之间的竞争主要占据屈曲模式。该研究可以提供理论上的支撑,以用纳米级保形涂层制备垂直对齐的CNT阵列,并了解CNT增强复合材料的稳定性和可靠性。 (c)2018年elestvier有限公司保留所有权利。

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