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物理学报  2008 

The stress characteristics of metal nanowires: an atomistic simulation study
金属纳米线应力分布特征的原子级模拟研究

Keywords: nanowire,stress distribution,molecular statics approach
纳米线,
,应力分布,,分子静力学

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Abstract:

In this paper, we have used molecular statics calculations with the quantum corrected Sutten-Chen type many-body force field to study the stress distribution characteristic of nickel nanowires with 100], 110] and 111] crystallographic orientations in equilibrium state. The simulated results show that tensile stress on the surface of the nanowires causes them to contract along the length. It can be seen that the stress is tensile in surface region while compressive in core region. With the increasing of diameter, the average stress in core region is compressive and strongly decreased to approach to zero, while the surface tensile stress first increases, and then tends to a non-zero constant. The contraction ratio of length, and average stress in core and surface are always largest for 100] nanowire and smallest for 111 ] nanowire.

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