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Comparative MD simulation study on the mechanical properties of a zigzag single-walled carbon nanotube in the presence of Stone-Thrower-Wales defects

机译:存在Stone-Thrower-Wales缺陷的锯齿形单壁碳纳米管力学性能的比较MD模拟研究

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Using molecular dynamics simulation, we investigate the influence of Stone-Thrower-Wales defects in the mechanical behavior of a zigzag (5,0) single-walled carbon nanotube considering two different interatomic potential functions, the Tersoff-Brenner bond order potential and the Tight-Binding potential. The nanotube is subjected to axial stretch and the potential energy is computed for gradually increasing values of strain. From the energy-strain curve the mechanical characteristics like Young's modulus, tensile strength and ductility are computed using both the potentials, firstly with a perfect lattice and then by introducing an increasing number of Stone-Thrower-Wales defects. Significant reduction in the values of the mechanical properties is observed with changes in the plastic deformation pattern. Experimental data compares reasonably well with our calculated values of the mechanical constants. Such investigations will help designing carbon nanotube based composites.
机译:使用分子动力学模拟,我们研究了Stone-Thrower-Wales缺陷对之字形(5,0)单壁碳纳米管的机械行为的影响,考虑了两个不同的原子间势函数,Tersoff-Brenner键序势和Tight -结合潜力。纳米管受到轴向拉伸,计算势能以逐渐增加应变值。从能量-应变曲线,可以同时利用这两个电位来计算机械特性,如杨氏模量,拉伸强度和延展性,首先是具有理想晶格,然后是通过引入越来越多的Stone-Thrower-Wales缺陷。随着塑性变形模式的改变,观察到机械性能值的显着降低。实验数据与我们计算出的机械常数值相当合理。这样的研究将有助于设计基于碳纳米管的复合材料。

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