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Tension and twist of chiral nanotubes: Torsional buckling, mechanical response and indicators of failure

机译:手性纳米管的拉伸和扭曲:扭转屈曲,机械响应和失效指标

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We report on molecular dynamic calculations of combined tension-torsion of chiral single-wall nanotubes. We work within the framework of objective structures that exploits symmetry groups to enable torsion of chiral nanotubes, in addition to non-equilibrium extension. We apply the method to study the mechanical response and failure of nanotubes of various chiralities. We find that three distinct regimes exist for nanotubes under twist: distorted but unbuckled, reversible torsional buckling and irreversible torsional buckling. When twisted but unbuckled nanotubes are subject to tension, there is minimal change in failure strain, whereas reversibly buckled nanotubes have substantially reduced failure strain and load. We also observe the evolution of the twisting moment during the elongation process while keeping the twist angle fixed. This evolution has two interesting and potentially useful features: first, some nanotubes unbuckle in the process of extension, and second, there is a clear correlation between extrema in the evolution of the twisting moment and impending nanotube failure. Given the sensitivity of electrical properties in carbon nanotubes to torsion, and the recent demonstrations of measuring torsion-induced changes, the latter feature suggests the possibility of real-time diagnostics to detect critical mechanical events.
机译:我们报告了分子动力学计算的手性单壁纳米管的组合拉伸-扭转。我们在目标结构的框架内开展工作,该目标结构利用对称基团来实现手性纳米管的扭转,以及非平衡延伸。我们将该方法用于研究各种手性纳米管的力学响应和破坏。我们发现扭曲下的纳米管存在三种不同的状态:扭曲但不弯曲,可逆扭转屈曲和不可逆扭转屈曲。当扭曲但未弯曲的纳米管受到拉力时,破坏应变的变化很小,而可逆弯曲的纳米管则大大降低了破坏应变和载荷。我们还观察了在延伸过程中扭曲力矩的演变,同时保持了扭曲角度不变。这种演变具有两个有趣且潜在有用的特征:首先,某些纳米管在拉伸过程中解开,其次,在扭转力矩的极端发展和即将发生的纳米管故障之间存在明显的相关性。考虑到碳纳米管中电特性对扭转的敏感性,以及最近对扭转引起的变化进行测量的演示,后者的功能表明可以进行实时诊断以检测关键的机械事件。

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