Publication | Open Access
Pure-Shuffle Nucleation of Deformation Twins in Hexagonal-Close-Packed Metals
215
Citations
37
References
2013
Year
Materials ScienceEngineeringDislocation InteractionPhysicsCrystalline DefectsSevere Plastic DeformationPure-shuffle NucleationCondensed Matter PhysicsApplied PhysicsMetallurgical InteractionNucleationSolid MechanicsMicrostructure-strength RelationshipPlasticityTwin NucleationConventional Glide-shuffle MechanismMechanics Of MaterialsMicrostructure
The propagation of deformation twins in hexagonal-close-packed metals is commonly described by a conventional glide-shuffle mechanism. The widely accepted convention is that this process is also responsible for twin nucleation, but lacks direct confirmation. Using atomistic simulations, we identify an unconventional pure-shuffle mechanism for the nucleation of (1¯012) twins, which then grow through the conventional glide-shuffle mechanism entailing the glide of twinning disconnections. The pure-shuffle nucleation of twins at grain boundaries can be ascribed to a high-stress concentration and pre-existing grain boundary dislocations.
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