Philosophical Magazine Letters · 1993 · 20 citations · 11 references
Materials ScienceTwin DislocationsEngineeringDislocation InteractionCrystalline DefectsSurface ScienceApplied PhysicsTwin DislocationMicrostructure-strength RelationshipDefect FormationDislocation StructuresThin Film Process TechnologyThin FilmsTwin Dislocation StructureCrystallographyThin Film ProcessingMicrostructure
Abstract The structure of {1101} twin dislocations in Ti films evaporated on NaCl substrates at 250°C has been examined and characterized by high-resolution transmission electron microscopy. The results have revealed that a twin dislocation structure with a step height 4d(K1), where d(K1) is the spacing of the {1101} twin planes, actually dissociates into two {11101} twin dislocations with step heights of d(K1) and 3d(K1). The twin dislocation with a step height of 3d (K1) contains an edge dislocation in the core, while that with a step height of d(K1) is a simple classical twin-dislocation structure. Twin dislocations with a step height of 2d(K1), including an edge dislocation in the core, also occur. The atomic-scale core structures of {1101} twin dislocations may be derived by analysis of the high-resolution images. The relative mobilities of the three types of twin dislocations are then discussed.
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Computer simulation of twinning dislocation in magnesium using a many-body potential
A. Serra, David Bacon · Philosophical magazine. A/Philosophical magazine. A. Physics of condensed matter. Structure, defects and mechanical properties · 1991 · 78 citations
Engineering, Dislocation Core, Severe Plastic Deformation +25