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Estimation of mechanical properties of single wall carbon nanotubes using molecular mechanics approach

机译:用分子力学方法估算单壁碳纳米管的力学性能

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Molecular mechanics based finite element analysis is adopted in the current work to evaluate the mechanical properties of Zigzag, Armchair and Chiral Single wall Carbon Nanotubes (SWCNT) of different diameters and chiralities. Three different types of atomic bonds, that is Carbon–Carbon covalent bond and two types of Carbon–Carbon van der Waals bonds are considered in the carbon nanotube system. The stiffness values of these bonds are calculated using the molecular potentials, namely Morse potential function and Lennard-Jones interaction potential function respectively and these stiffness’s are assigned to spring elements in the finite element model of the CNT. The geometry of CNT is built using a macro that is developed for the finite element analysis software. The finite element model of the CNT is constructed, appropriate boundary conditions are applied and the behavior of mechanical properties of CNT is studied.
机译:当前工作中采用了基于分子力学的有限元分析方法,以评估不同直径和手性的之字形,扶手椅和手性单壁碳纳米管(SWCNT)的力学性能。碳纳米管系统考虑了三种不同类型的原子键,即碳-碳共价键和两种碳-范德华键。这些键的刚度值分别使用分子电势来计算,即莫尔斯电势函数和Lennard-Jones相互作用势函数,并将这些刚度分配给CNT的有限元模型中的弹簧单元。 CNT的几何结构是使用为有限元分析软件开发的宏构建的。建立了碳纳米管的有限元模型,应用了适当的边界条件,研究了碳纳米管的力学性能。

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