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Mobility of a 5|7 defect in carbon nanotubes

机译:碳纳米管中5 | 7缺陷的迁移率

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The movement of a 5|7 defect in the plastic deformations of a carbon nanotube (CNT) plays the role of dislocation glide in the plastic deformations of metals. This work is concerned with the atomic shift mechanism of the 5|7 defect and the energy barrier when the CNT is subjected to tensile loading. Action-derived molecular dynamics (ADMD) is applied to find the minimum energy path and the energy barrier. It is found that the tensile loads make it easy for the 5|7 defect to glide, and lower the energy barrier. The minimum load level that makes a 5|7 defect glide freely with no energy barrier in the presence of an adatom is obtained.
机译:碳纳米管(CNT)的塑性变形中5 | 7缺陷的运动在金属的塑性变形中起位错滑移的作用。这项工作涉及当CNT受到拉伸载荷时5 | 7缺陷的原子迁移机理和能垒。运用行动分子动力学(ADMD)来找到最小的能量路径和能量垒。发现拉伸载荷使5 | 7缺陷易于滑动,并降低了能垒。获得了在存在原子的情况下使5 | 7缺陷无能垒自由滑动的最小载荷水平。

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