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A molecular structural mechanics model applied to the static behavior of single-walled carbon nanotubes: New general formulation

机译:一种应用于单壁碳纳米管静态行为的分子结构力学模型:新的一般公式

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摘要

A new general formulation for the mechanical behavior of Single-Walled Carbon Nanotubes is presented. Carbon atoms are located at the nodes of an hexagonal honeycomb lattice wrapped into a cylinder. They are linked by covalent C-C bonds represented by a truss or spring element, and the three-body interaction among two neighboring covalent bonds is reproduced by a rotational spring. The main advantage of our approach is to allow general load conditions (and any chirality) with no need of specific formulation for each load case, in contrast with previous works [26,27,31 ]. Four load configurations are adopted: tension, compression, bending and torsion of cantivelered SWCNTs. Calculations with our own codes for both AMBER and Morse potential functions have been carried out, aimed to compare their final results. Initial positions of the atoms (nodes) into nanotube cylindrical geometry has been reproduced in great detail by means of a conformal mapping from the planar graphene sheet. Therefore, the effect of initial SWCNTs curvature has been introduced explicitly through a system of initial stresses (prestressed state) which contribute to maintain their circular cross-section. Numerical results and deformed shapes for nanotubes with several diameters and chiralities under each load case are used to obtain their mechanical parameters with the only objective of checking the present formulation with previous works [28,30,20,24]. Also, the significance of the atomistic discrete simulations at the nano-scale size against other continuum models is underlined.
机译:提出了一种新的关于单壁碳纳米管力学行为的通用公式。碳原子位于包裹在圆柱体中的六角形蜂窝晶格的节点处。它们通过以桁架或弹簧元件表示的共价C-C键连接,两个相邻的共价键之间的三体相互作用通过旋转弹簧复制。与以前的工作相比,我们的方法的主要优点是允许在一般载荷条件下(以及任何手性),而无需为每种载荷工况指定具体公式[26,27,31]。采用四种载荷配置:悬臂式SWCNT的拉伸,压缩,弯曲和扭转。用我们自己的代码对AMBER和莫尔斯电势函数进行了计算,目的是比较它们的最终结果。原子(节点)在纳米管圆柱几何中的初始位置已通过平面石墨烯片的保形映射得到了非常详细的复制。因此,已经通过有助于维持其圆形横截面的初始应力(预应力状态)系统明确引入了初始SWCNT曲率的影响。在每种载荷情况下,具有多个直径和手性的纳米管的数值结果和变形形状被用来获得其力学参数,其唯一目的是通过先前的工作来检查本配方[28,30,20,24]。此外,强调了原子尺度离散仿真在纳米尺度上相对于其他连续模型的重要性。

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  • 来源
    《Computers & Structures》 |2013年第10期|68-87|共20页
  • 作者单位

    Departamento de Mecanka de los Medios, Continuos y Teoria de Estructuras, Escuela Tecnica Superior de Ingenieros, de Caminos,Canales y Puertos. Universidad Politecnica de Valencia, Camino de vera s, Valencia, Spain;

    Departamento de Mecanka de los Medios, Continuos y Teoria de Estructuras, Escuela Tecnica Superior de Ingenieros, de Caminos,Canales y Puertos. Universidad Politecnica de Valencia, Camino de vera s, Valencia, Spain;

    Departamento de Mecanka de los Medios, Continuos y Teoria de Estructuras, Escuela Tecnica Superior de Ingenieros, de Caminos,Canales y Puertos. Universidad Politecnica de Valencia, Camino de vera s, Valencia, Spain;

    Departamento de Ingenieria de la Construction, Escuela Tecnica Superior de Ingenieros de Caminos, Canales y Puertos, Universidad Politecnica de Valencia, Camino de vera s, Valencia, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Single-walled carbon nanotubes; Molecular structural mechanics; AMBER potential; Morse potential; Prestressed state; Graphene sheet;

    机译:单壁碳纳米管;分子结构力学;琥珀色的潜力;莫尔斯电势;预应力状态;石墨烯片;

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