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Nucleation of dislocations and twins in fcc nanocrystals: Dynamics of structural transformations 被引量:1
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作者 Aleksandr V.Korchuganov Aleksandr N.Tyumentsev +6 位作者 Konstantin P.Zolnikov Igor Yu.Litovchenko Dmitrij S.Kryzhevich Elazar Gutmanas Shouxin Li Zhongguang Wang sergey g.psakhie 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第1期201-206,共6页
This paper reports on a molecular dynamics study of structural rearrangements in a copper nanocrystal during nucleation of plastic deformation under uniaxial tension. The study shows that the resulting nucleation of p... This paper reports on a molecular dynamics study of structural rearrangements in a copper nanocrystal during nucleation of plastic deformation under uniaxial tension. The study shows that the resulting nucleation of partial dislocations on the free surface and their glide occurs through local fcc→bcc→hcp transformations via consistent atomic displacements. We propose an atomic model for the generation of dislocations and twins based on local reversible fcc→bcc→fcc transformations, with the reverse one proceeding through an alternative system. The model gives an insight into possible causes and mechanisms of the generation of partial dislocations and mechanical twins in two and more adjacent planes of plastically deformed nanocrystals. The obtained data allow a better understanding of how plasticity is generated in nanostructured materials. 展开更多
关键词 Lattice defects DISLOCATION Nanotwin Atomic model Molecular DYNAMICS simulations
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