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Chain Model for Carbon Nanotube Bundle under Plane Strain Conditions

机译:平面应变条件下碳纳米管束的链模型

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摘要

Carbon nanotubes (CNTs) have record high tensile strength and Young’s modulus, which makes them ideal for making super strong yarns, ropes, fillers for composites, solid lubricants, etc. The mechanical properties of CNT bundles have been addressed in a number of experimental and theoretical studies. The development of efficient computational methods for solving this problem is an important step in the design of new CNT-based materials. In the present study, an atomistic chain model is proposed to analyze the mechanical response of CNT bundles under plane strain conditions. The model takes into account the tensile and bending rigidity of the CNT wall, as well as the van der Waals interactions between walls. Due to the discrete character of the model, it is able to describe large curvature of the CNT wall and the fracture of the walls at very high pressures, where both of these problems are difficult to address in frame of continuum mechanics models. As an example, equilibrium structures of CNT crystal under biaxial, strain controlled loading are obtained and their thermal stability is analyzed. The obtained results agree well with previously reported data. In addition, a new equilibrium structure with four SNTs in a translational cell is reported. The model offered here can be applied with great efficiency to the analysis of the mechanical properties of CNT bundles composed of single-walled or multi-walled CNTs under plane strain conditions due to considerable reduction in the number of degrees of freedom.
机译:碳纳米管(CNT)具有高拉伸强度和杨氏模量,这使其非常适合制造超强力的纱线,绳索,复合材料填料,固体润滑剂等。CNT束的机械性能已在许多实验和理论研究。解决这一问题的有效计算方法的开发是新的基于CNT的材料设计中的重要一步。在本研究中,提出了一个原子链模型来分析在平面应变条件下CNT束的机械响应。该模型考虑了CNT壁的拉伸和弯曲刚度,以及壁之间的范德华相互作用。由于该模型具有离散性,因此能够描述CNT壁的大曲率以及在非常高的压力下壁的破裂,而这两个问题都很难在连续力学模型的框架中解决。例如,获得了CNT晶体在双轴应变控制加载下的平衡结构,并对其热稳定性进行了分析。获得的结果与先前报道的数据非常吻合。另外,报道了在翻译细胞中具有四个SNT的新的平衡结构。由于自由度的显着降低,此处提供的模型可以在平面应变条件下高效地用于分析由单壁或多壁CNT组成的CNT束的机械性能。

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