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Abstracts
Detwinning Mechanisms for Growth Twins in FCC Metals
a.229
Evolution of Microstructure during Twinning
a.230
Hardening by Twin Boundaries During Nanoindentation
a.231
Interaction of Moving {10•2} Twin Boundary with Perfect Dislocations
a.232
Nanotwin Superlattices with Low-Symmetry Phase
a.233
Occurrence of Twinning in Bulk Semiconductor Crystal Growth
a.234
Phase-Field Simulation of Stress-Induced Twinning and De-Twinning
a.235
Probabilistic Twin Nucleation Model for HCP Polycrystalline Metals
a.236
Quantification of Multiple Twinning
a.237
HomeDefect and Diffusion ForumDefects and Diffusion, Theory & Simulation IINanotwin Superlattices with Low-Symmetry Phase

Nanotwin Superlattices with Low-Symmetry Phase

Page: A233

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