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Analysis of the mechanical behavior of single wall carbon nanotubes by a modified molecular structural mechanics model incorporating an advanced chemical force field

机译:改进的分子结构力学模型结合先进的化学力场分析单壁碳纳米管的力学行为

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The outstanding properties of carbon nanotubes (CNTs) keep attracting the attention of researchers from diffe-rent fields. CNTs are promising candidates for applications e.g. in lightweight construction but also in electronics, medicine and many more. The basis for the realization of the manifold applications is a detailed knowledge of the material properties of the carbon nanotubes. In particular for applications in lightweight constructions or in composites, the knowledge of the mechanical behavior of the CNTs is of vital interest. Hence, a lot of effort is put into the experimental and theoretical determination of the mechanical material properties of CNTs. Due to their small size, special techniques have to be applied. In this research, a modified molecular structural me-chanics model for the numerical determination of the mechanical behavior of carbon nanotubes is presented. It uses an advanced approach for the geometrical representation of the CNT structure while the covalent bonds in the CNTs are represented by beam elements. Furthermore, the model is specifically designed to overcome major drawbacks in existing molecular structural mechanics models. This includes energetic consistency with the underlying chemical force field. The model is developed further to enable the application of a more advanced chemical force field representation. The developed model is able to predict, inter alia, the lateral and radial stif-fness properties of the CNTs. The results for the lateral stiffness are given and discussed in order to emphasize the progress made with the presented approach.
机译:碳纳米管(CNTs)的卓越性能一直吸引着来自不同领域的研究人员的注意。 CNT是有希望的应用前景的候选者,例如碳纳米管。在轻型结构中,在电子,医学等方面也是如此。实现多种应用的基础是对碳纳米管材料特性的详细了解。特别是对于在轻质结构或复合材料中的应用,非常重要的是了解CNT的机械性能。因此,在确定碳纳米管的机械材料性能的实验和理论上付出了很多努力。由于尺寸小,必须应用特殊技术。在这项研究中,提出了一种改进的分子结构力学模型,用于数值确定碳纳米管的力学行为。它使用先进的方法对CNT结构进行几何表示,而CNT中的共价键则由束元素表示。此外,该模型经过专门设计,可以克服现有分子结构力学模型中的主要缺陷。这包括与基础化学力场的高能一致性。该模型得到了进一步开发,可以应用更高级的化学力场表示法。所开发的模型尤其能够预测CNT的横向和径向刚度特性。给出并讨论了横向刚度的结果,以强调所提出方法的进展。

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