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Grain boundary-mediated plasticity in nanocrystalline nickel

  • Zhiwei Shan
  • , E. A. Stach
  • , J. M.K. Wiezorek
  • , J. A. Knapp
  • , D. M. Follstaedt
  • , S. X. Mao
  • University of Pittsburgh
  • LBL
  • Sandia National Laboratories

Research output: Contribution to journalArticlepeer-review

910 Scopus citations

Abstract

The plastic behavior of crystalline materials is mainly controlled by the nucleation and motion of lattice dislocations. We report in situ dynamic transmission electron microscope observations of nanocrystalline nickel films with an average grain size of about 10 nanometers, which show that grain boundary-mediated processes have become a prominent deformation mode. Additionally, trapped lattice dislocations are observed in individual grains following deformation. This change in the deformation mode arises from the grain size-dependent competition between the deformation controlled by nucleation and motion of dislocations and the deformation controlled by diffusion-assisted grain boundary processes.

Original languageEnglish
Pages (from-to)654-657
Number of pages4
JournalScience
Volume305
Issue number5684
DOIs
StatePublished - 30 Jul 2004
Externally publishedYes

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