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Vibration of carbon nanotubes with defects: order reduction methods

机译:带有缺陷的碳纳米管的振动:降阶方法

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摘要

Order reduction methods are widely used to reduce computational effort when calculating the impact of defects on the vibrational properties of nearly periodic structures in engineering applications, such as a gas-turbine bladed disc. However, despite obvious similarities these techniques have not yet been adapted for use in analysing atomic structures with inevitable defects. Two order reduction techniques, modal domain analysis and modified modal domain analysis, are successfully used in this paper to examine the changes in vibrational frequencies, mode shapes and mode localization caused by defects in carbon nanotubes. The defects considered are isotope defects and Stone–Wales defects, though the methods described can be extended to other defects.
机译:在计算缺陷对工程应用(例如燃气轮机叶片)中近周期性结构的振动特性的影响时,阶次减少方法被广泛用于减少计算量。但是,尽管有明显的相似性,但这些技术尚未适用于分析具有不可避免缺陷的原子结构。本文成功地使用了两种降阶技术:模态域分析和改进的模态域分析,以检查由碳纳米管缺陷引起的振动频率,模态形状和模态局部化的变化。尽管所描述的方法可以扩展到其他缺陷,但所考虑的缺陷是同位素缺陷和Stone-Wales缺陷。

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