Pages that link to "Item:Q1601700"
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The following pages link to A theoretical investigation of the influence of dislocation sheets on evolution of yield surfaces in single-phase B.C.C. polycrystals (Q1601700):
Displaying 13 items.
- Multiscale modelling of the induced plastic anisotropy in bcc metals (Q422699) (← links)
- The backstress effect of evolving deformation boundaries in FCC polycrystals (Q422711) (← links)
- Influence of microstresses on subsequent yield surfaces of polycrystalline materials (Q753552) (← links)
- Modelling of elastoplastic behaviour of metallic materials with a homogenization approach: a self-consistent model based on dislocation densities (Q889779) (← links)
- Experimental characterization and model identification of directional hardening effects in metals for complex strain path changes (Q991710) (← links)
- The Facet method: A hierarchical multilevel modelling scheme for anisotropic convex plastic potentials (Q1013317) (← links)
- Comparison of two models for anisotropic hardening and yield surface evolution in bcc sheet steels (Q1657744) (← links)
- A new visco-plastic self-consistent formulation implicit in dislocation-based hardening within implicit finite elements: application to high strain rate and impact deformation of tantalum (Q1986667) (← links)
- On the modeling of hardening in metals during non-proportional loading (Q2427703) (← links)
- Multiscale modelling of the plastic anisotropy and deformation texture of polycrystalline materials (Q2459459) (← links)
- Modelling of the internal stress in dislocation cell structures (Q2459468) (← links)
- Numerical study of the influence of microstructure on subsequent yield surfaces of polycrystalline materials (Q2573903) (← links)
- A minimum principle for microstructuring in rigid-viscoplastic crystalline solids (Q2670201) (← links)