Formation of dislocation networks in a coherent Cu Σ3(1 1 1) twin boundary
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- Type
- article
- Published
- 2015-06-01
- Cited by
- 28
- References
- 22
- OpenAlex
- https://openalex.org/W1998787368
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:135687700
Keywords
Dislocation, Materials science, Crystal twinning, Boundary (topology), Molecular dynamics
References
- Stacking fault energies and slip in nanocrystalline metals
- Atomic-scale simulation of screw dislocation/coherent twin boundary interaction in Al, Au, Cu and Ni
- Deformation mechanisms in nanotwinned metal nanopillars.
- Dislocation–twin interactions in nanocrystalline fcc metals
- Twinning dislocation multiplication at a coherent twin boundary
- Fast parallel algorithms for short-range molecular dynamics
- Orientation dependence of shock-induced twinning and substructures in a copper bicrystal
- In situ observations of crack arrest and bridging by nanoscale twins in copper thin films
- Ultrahigh Strength and High Electrical Conductivity in Copper
- Atomistic simulations and continuum modeling of dislocation nucleation and strength in gold nanowires
- Dislocation nucleation governed softening and maximum strength in nano-twinned metals
- Plastic deformation mechanism in nanotwinned metals: An insight from molecular dynamics and mechanistic modeling
- Extracting dislocations and non-dislocation crystal defects from atomistic simulation data
- Interactions between non-screw lattice dislocations and coherent twin boundaries in face-centered cubic metals
- The interaction mechanism of screw dislocations with coherent twin boundaries in different face-centred cubic metals
- Energetics of residual dislocations associated with slip-twin and slip-GBs interactions
- Structural stability and lattice defects in copper: Ab initio , tight-binding, and embedded-atom calculations
- Repulsive force between screw dislocation and coherent twin boundary in aluminum and copper
- Automated identification and indexing of dislocations in crystal interfaces
- Defective twin boundaries in nanotwinned metals.
Cited by
- Dislocation-twin boundary interaction in small scale Cu bi-crystals loaded in different crystallographic directions
- Mechanistic study of bending creep behaviour of bicrystal nanobeam
- Overview on micro- and nanomechanical testing: New insights in interface plasticity and fracture at small length scales
- The effect of surface step and twin boundary on deformation twinning in nanoscale metallic systems
- Influence of stacking fault energy and dislocation character on slip transfer at coherent twin boundaries studied by micropillar compression
- On the nature of twin boundary-associated strengthening in Fe-Mn-C steel
- Misfit dislocation networks in semi-coherent miscible phase boundaries: An example for U–Zr interfaces
- Dislocation slip transmission through a coherent Σ3111 copper twin boundary: Strain rate sensitivity, activation volume and strength distribution function
- The negative Poisson's ratio and strengthening mechanism of nanolayered graphene/Cu composites
- Size dependent strength, slip transfer and slip compatibility in nanotwinned silver
- Role of axial twin boundaries on deformation mechanisms in Cu nanopillars
- Atomistic deformation behavior of single and twin crystalline Cu nanopillars with preexisting dislocations
- Deciphering the interactions between single arm dislocation sources and coherent twin boundary in nickel bi-crystal
- Interactions between Dislocations and Boundaries during Deformation
- Nano-scale simulation of directional solidification in TWIP stainless steels: A focus on plastic deformation mechanisms
- Role of twin boundary position on the yield strength of Cu nanopillars
- Effect of De-Twinning on Tensile Strength of Nano-Twinned Cu Films
- Intermediate state of hexagonal close-packed structure to face-centered cubic structure transformation: Direct evidence for basal-type face-centered cubic phase via partial dislocation in zirconium
- Dislocation transmission across Σ3112 incoherent twin boundary: a combined atomistic and phase-field study
- Size Scaling in Bi-Crystalline Cu Micropillars Containing a Coherent Twin Boundary
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