Dissociation of Dislocations on {110} Planes in Anisotropie B.C.C. Metals
Author:
Publisher
Wiley
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference27 articles.
1. LX. A mechanism for the growth of deformation twins in crystals
2. ½<111> screw dislocations and the nucleation of {112}<111> twins in the b.c.c. lattice
3. The dissociation of dislocations on {112} planes in anisotropic b.c.c. crystals
4. Stair-rod Dislocations and Extended Barriers in the Body-centered Cubic Lattice
5. to be published.
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2. Evaluating the effects of loading parameters on single-crystal slip in tantalum using molecular mechanics;Philosophical Magazine;2013-10
3. On the stability of the three-fold symmetrically dissociated screw dislocation in the B.C.C. lattice;Transactions of the Royal Society of South Africa;2003-01
4. The Plastic Deformation of Iron Single Crystals with Shear Tests in {110}〈111〉 and {112}〈111〉 Slip Systems;Transactions of the Japan Institute of Metals;1977
5. Deformation Behavior of Iron Single Crystals under Simple Shear;Tetsu-to-Hagane;1976
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