Anisotropic mechanical properties of S-graphene nanotubes: Influence of chirality, temperature, number of walls, and defects

IF 2.7 Q2 PHYSICS, CONDENSED MATTER
Dongxu Zhang , Jie Zhang
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引用次数: 0

Abstract

In this study, the mechanical properties of a novel two-dimensional (2D) graphene allotrope, S-graphene nanotubes (S-GNTs), are investigated for the first time using non-equilibrium molecular dynamics (NEMD) simulations. Key mechanical properties, including the fracture process, stress distribution, elastic modulus, toughness, ultimate stress, and fracture strain, are systematically examined. The influence of critical parameters such as length, radius, temperature, number of walls, and vacancy defects on these properties is analyzed. S-GNTs exhibit brittle behavior and anisotropic properties, with armchair fractures near boundaries due to stress concentration and zigzag fractures around the middle, reflecting chirality-dependent failure mechanisms. Temperature is the most influential factor, causing the largest and most pervasive degradation in mechanical properties due to increased thermal vibrations weakening atomic bonds. Radius has a greater influence on the mechanical properties of S-GNTs than length.
S 石墨烯纳米管的各向异性机械特性:手性、温度、管壁数和缺陷的影响
在这项研究中,首次使用非平衡分子动力学(NEMD)模拟研究了一种新型二维(2D)石墨烯同素异形体s -石墨烯纳米管(S-GNTs)的力学性能。关键的力学性能,包括断裂过程,应力分布,弹性模量,韧性,极限应力和断裂应变,系统地检查。分析了长度、半径、温度、壁数、空位缺陷等关键参数对这些性能的影响。S-GNTs表现出脆性行为和各向异性,边界附近由于应力集中而出现扶手状裂缝,中间周围出现之字形裂缝,反映了手性依赖的破坏机制。温度是影响最大的因素,由于增加的热振动削弱了原子键,导致机械性能的最大和最普遍的退化。半径对s - gnt力学性能的影响大于长度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
6.50
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0.00%
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