Emergence of directionally-anisotropic mobility in a faceted Ʃ11 ⟨110⟩ tilt grain boundary in Cu
Author:
Funder
Division of Materials Research
Publisher
IOP Publishing
Subject
Computer Science Applications,Mechanics of Materials,Condensed Matter Physics,General Materials Science,Modeling and Simulation
Link
https://iopscience.iop.org/article/10.1088/1361-651X/ab8baa/pdf
Reference44 articles.
1. Anti-thermal mobility in the Σ3 [111] 60° {11 8 5} grain boundary in nickel: Mechanism and computational considerations
2. 〈110〉 symmetric tilt grain-boundary structures in fcc metals with low stacking-fault energies
3. Dissociation and faceting of asymmetrical tilt grain boundaries: Molecular dynamics simulations of copper
4. Atomic structures of symmetrical and asymmetrical facets in a near Σ=9{221} tilt grain boundary in copper
5. Symmetric and asymmetric tilt grain boundary structure and energy in Cu and Al (and transferability to other fcc metals)
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1. Atomistic Insight into Grain Boundary Deformation Induced Strengthening in Layer-Grained Nanocrystalline Al;Langmuir;2023-06-30
2. Atomic-scale observation of dynamic grain boundary structural transformation during shear-mediated migration;Science Advances;2022-11-11
3. Alloying induces directionally-dependent mobility and alters migration mechanisms of faceted grain boundaries;Scripta Materialia;2021-03
4. Shuffling mode competition leads to directionally anisotropic mobility of faceted Σ11 boundaries in fcc metals;Physical Review Materials;2020-11-09
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