Title of article
Ab initio study of 〈1 1 1〉 {1 1 0} superdislocation properties in B2-MgRE (RE = La–Er) intermetallics
Author/Authors
Ma، نويسنده , , Li and Pan، نويسنده , , Rong-Kai and Fan، نويسنده , , Tou-Wen and Tang، نويسنده , , Bi-Yu and Peng، نويسنده , , Li-Ming and Ding، نويسنده , , Wen-Jiang، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
5
From page
168
To page
172
Abstract
The structures and properties of 〈1 1 1〉{1 1 0} superdislocations in B2-MgRE (RE = La–Er) intermetallics are investigated using the Peierls–Nabarro model in combination with generalized stacking fault (GSF) energies. The results demonstrate that the 〈1 1 1〉{1 1 0} superdislocations in B2-MgRE have dissociated into two collinear partials bound to anti-phase boundary. For the same material system, the dislocation dissociated width of screw is narrower than that of edge, while the Peierls energy and stress are larger. With increasing of atomic number, the dislocation dissociated width, Peierls energy and stress in B2-MgRE decrease for both early lanthanides from La to Sm and late lanthanides from Eu to Er. Furthermore, the results of Peierls–Nabarro model show that both stable and unstable GSF energies have important influence on the Peierls energy and stress. With increasing of the ratio of stable GSF energy to unstable GSF energy, the Peierls energy and stress decrease.
Keywords
Generalized stacking fault energy , MgRE intermetallics , Peierls stress , Dislocation , Peierls–Nabarro model
Journal title
Computational Materials Science
Serial Year
2013
Journal title
Computational Materials Science
Record number
1690399
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