Pages that link to "Item:Q422623"
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The following pages link to Discrete dislocation dynamics analysis of the effect of lattice orientation on void growth in single crystals (Q422623):
Displaying 14 items.
- Atomistic insights into dislocation-based mechanisms of void growth and coalescence (Q361472) (← links)
- Void growth and coalescence in ductile solids with stage III and stage IV strain hardening (Q422701) (← links)
- Plastic size effect analysis of lamellar composites using a discrete dislocation plasticity approach (Q422803) (← links)
- Computational strain gradient crystal plasticity (Q748714) (← links)
- Influence of single crystal orientation on homogeneous dislocation nucleation under uniaxial loading (Q1025203) (← links)
- Lattice orientation effects on void growth and coalescence in fcc single crystals (Q1046035) (← links)
- Generation and accumulation of point defects in FCC single crystals upon plastic strain (Q1048642) (← links)
- A large deformation atomistic study examining crystal orientation effects on the stress-strain relationship (Q1348649) (← links)
- Void growth simulations in single crystals (Q1368063) (← links)
- Cylindrical void in a rigid-ideally plastic single crystal. I: Anisotropic slip line theory solution for face-centered cubic crystals (Q1779860) (← links)
- Effect of shape on void growth: a coupled extended finite element method (XFEM) and discrete dislocation plasticity (DDP) study (Q2063436) (← links)
- Elastic interaction between dislocations and a cavity embedded in a biaxially stressed solid (Q2296311) (← links)
- Size effects on void growth in single crystals with distributed voids (Q2475202) (← links)
- Cylindrical void in a rigid-ideally plastic single crystal. II: Experiments and simulations (Q2581874) (← links)