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Deformation behavior of FCC crystalline metallic nanowires under high strain rates

  • Yue Qi
  • , Hideyuki Dceda
  • , Tahir Cagin
  • , Konrad Samwer
  • , William L. Johnson
  • , William A. Goddard
  • California Institute of Technology

Résultats de recherche: Contribution à un journalArticle de conférenceRevue par des pairs

Résumé

We used molecular dynamics (MD) methods to study the deformation behavior of metallic alloy crystal nanowires of pure Cu, NiCu alloy and NiAu alloy, under high rates of uniaxial tensile strain, ranging from 5*10 8/s to 5*10 10/s. These nanowires are just about 2 nm thick and hence cannot sustain dislocations, instead we find that deformation proceeds through twinning and coherent slipping mechanisms. NiAu has a 13% size mismatch whereas NiCu only 2.5%. As a result the critical strain rate at which the `nanowire crystals' flow like a `liquid' is 100 times smaller for NiAu. We also calculated the elastic constants at each strain state for all strain rates to identify the relation between mechanical `shear' instability and deformation process.

langue originaleAnglais
Pages (de - à)367-372
Nombre de pages6
journalMaterials Research Society Symposium - Proceedings
Volume554
étatPublié - 1 déc. 1999
Modification externeOui
EvénementProceedings of the 1998 MRS Fall Meeting - Symposium MM on'Bulk Metallic Glasses' - Boston, MA, USA
Durée: 1 déc. 19983 déc. 1998

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