The balance between the energies of the symmetric(101¯2)twin boundaries and asymmetric basal/prismatic interfaces in hcp metals
Author:
Funder
Czech Science Foundation
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference18 articles.
1. Deformation twinning;Christian;Prog. Mater. Sci.,1995
2. Effective values of critical resolved shear stress for slip in polycrystalline magnesium and other hcp metals;Hutchinson;Scripta Mater.,2010
3. Temperature dependency of slip and twinning in plane strain compressed magnesium single crystals;Chapius;Acta Mater.,2011
4. Twinning and de-twinning via glide and climb of twinning dislocations along serrated coherent twin boundaries in hexagonal-close-packed metals;Wang;Mater. Res. Lett.,2013
5. On the importance of prismatic, basal interfaces in the growth of, (1012) twins in hexagonal close packed crystals;Xu;Scripta Mater.,2013
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1. Transformation of Coherent Twin Boundary into Basal-Prismatic Boundary in HCP-Ti: A Molecular Dynamics Study;Materials;2024-05-06
2. Nucleation mechanism of {101¯2} twin with low Schmid factor in hexagonal close-packed metals;Materials Science and Engineering: A;2020-07
3. Habit planes of twins in a deformed Mg alloy determined from three-dimensional microstructure analysis;Materials Characterization;2020-01
4. On the conversion of plastic work to heat in Mg alloy AZ31B for dislocation slip and twinning deformation;Mechanics of Materials;2019-07
5. Dislocation Content of Non-Classical Twin Boundaries in Hexagonal Metals;Acta Physica Polonica A;2018-09
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