Title of article
Core structure, dislocation energy and Peierls stress for edge dislocations with (0 0 0 1) and slip planes in α-Zr
Author/Authors
Voskoboinikov، نويسنده , , R.E. and Osetsky، نويسنده , , Yu.N. and Bacon، نويسنده , , D.J.، نويسنده ,
Pages
4
From page
45
To page
48
Abstract
Atomic-scale simulations of edge dislocations of the 1 / 3 1 1 2 ¯ 0 ( 0 0 0 1 ) and 1 / 3 1 1 2 ¯ 0 { 1 1 ¯ 0 0 } slip systems have been carried out using a Finnis-Sinclair-type interatomic potential for α-zirconium. The distribution of atomic displacements in the dislocation core shows that in this model the edge dislocation in the basal plane dissociates into two Shockley partials whereas the dislocation in the prism plane remains undissociated. The effective core radius and core energy are estimated, and dislocation response to increasing applied shear strain is investigated. The core properties and the critical stress for dislocation glide (Peierls stress) depend sensitively on whether the core extends or not.
Keywords
Dislocation core , Extended dislocation , Stacking fault , Peierls stress , Atomic-scale modelling
Journal title
Astroparticle Physics
Record number
2067355
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