Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7961314 | Computational Materials Science | 2013 | 6 Pages |
Abstract
Using molecular-dynamic (MD) simulation, we investigated the mechanical responses of ã1Â 0Â 0ã and ã1Â 1Â 0ã silver nanowires (NWs) with closed cracks for tensile deformations. The investigation designs different radius of closed cracks inside of the NWs and studies the influence of the cracks on the yield stress, deformation mechanism, and dislocation emission. The embedded-atom-method (EAM) potential is employed to describe the atomic interactions. To identify the defects evolution and deformation mechanism, a centrosymmetry parameter is defined and implemented in the self-developed program. A detailed discussion of deformation behaviors on the dependence of the Poisson's ratios has been presented. The simulations show that the ã1Â 1Â 0ã Ag NW is more sensitive to the crack under tensile loading. The study on the incipient plastic deformation will be helpful to further understanding of the mechanical properties of nanomaterials.
Keywords
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Physical Sciences and Engineering
Engineering
Computational Mechanics
Authors
Yinlu Sun, Wei Sun, Yingqiang Fu, FenYing Wang, Yajun Gao, Jianwei Zhao,