Materials (Dec 2019)

First-Principles Calculations of Oxygen-Dislocation Interaction in Magnesium

  • Chao Fang,
  • Jing Zhang,
  • Ying Huang,
  • Jianhao Chen

DOI
https://doi.org/10.3390/ma13010116
Journal volume & issue
Vol. 13, no. 1
p. 116

Abstract

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The interaction between interstitial oxygen atoms and <a>-type screw dislocations was investigated via first-principles calculations to elucidate the effect of oxygen solutes on the deformation behaviors of Mg. The results show that repulsive interactions exist between basal screw dislocation cores and oxygen atoms, which would enable the full basal dislocation to bypass the oxygen atoms in the dislocation glide plane through the cross-slip process. This repulsion also increases the resistance to the motion of dissociated basal dislocations. Moreover, the energy of prismatic <a>-type screw dislocation cores is reduced by the presence of oxygen, which would stabilize the screw dislocation core on the prismatic plane, accordingly facilitating the prismatic slip. This information can complement the fundamental knowledge of alloying Mg using interstitial solutes.

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