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Orientation-dependent deformation mechanisms of bcc niobium nanoparticles

  • J. J. Bian
  • , L. Yang
  • , X. R. Niu
  • , G. F. Wang*
  • *Corresponding author for this work

    Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

    Abstract

    Nanoparticles usually exhibit pronounced anisotropic properties, and a close insight into the atomic-scale deformation mechanisms is of great interest. In present study, atomic simulations are conducted to analyse the compression of bcc nanoparticles, and orientation-dependent features are addressed. It is revealed that surface morphology under indenter predominantly governs the initial elastic response. The loading curve follows the flat punch contact model in [1 1 0] compression, while it obeys the Hertzian contact model in [1 1 1] and [0 0 1] compressions. In plastic deformation regime, full dislocation gliding is dominated in [1 1 0] compression, while deformation twinning is prominent in [1 1 1] compression, and these two mechanisms coexist in [0 0 1] compression. Such deformation mechanisms are distinct from those in bulk crystals under nanoindentation and nanopillars under compression, and the major differences are also illuminated. Our results provide an atomic perspective on the mechanical behaviours of bcc nanoparticles and are helpful for the design of nanoparticle-based components and systems.
    Original languageEnglish
    Pages (from-to)1848–1864
    JournalPhilosophical Magazine
    Volume98
    Issue number20
    Online published3 Apr 2018
    DOIs
    Publication statusPublished - Jul 2018

    Research Keywords

    • compression
    • deformation twinning
    • dislocation
    • Nanoparticles

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