Performing large-strain rolling of initially ultrafine-grained copper obtained by eight passes in equal-channel angular pressing, a brass-type - rather than a copper-type - texture was achieved. Clearly, the deformation mechanism is different in ultrafine-grained materials for subsequent rolling. Using the viscoplastic self-consistent polycrystal model, we find that the deformation mechanism is associated with the activation of partial {1 1 1} 〉1 1 -2〈 slip and with a reduced quantity of geometrically necessary dislocations that lead to near Taylor polycrystal deformation conditions in ultrafine-grained copper
AbstractUltra-fine-grained high-purity copper (99.99%) deformed by means of high-pressure torsion in...
The viscoplastic Φ-model belongs to the same class of self-consistent models but it is based on a ne...
The evolution of microstructure and texture gradient in warm Accumulative Roll Bonded Cu-Cu multilay...
It is shown by a crystallographic etching technique applicable to copper that deformation banding is...
Deformation banding is observed to be an important deformation mode and its inclusion into texture m...
Numerical simulations of texture development in polycrystalline oxygen-free high conductivity (OFHC)...
It is shown by a crystallographic etching technique that deformation banding is an important deforma...
In this work the microstructural features of pure copper were studied using two methods of severe pl...
The effect of strain path change during rolling has been investigated for copper and nickel using X-...
Sliding contact induces severe plastic deformation (SPD) at the surface of ductile materials and ind...
Surface mechanical treatments are known to introduce deformation heterogeneity, thus entailing a com...
The density of geometrically necessary dislocations (GND) obtained from the lattice curvature was st...
International audienceThe effect of grain size on the tensile plastic deformation of ultrafine-grain...
The evolution of crystallographic texture in polycrystalline copper and nickel has been studied. The...
The effect of strain path change during rolling on the evolution of deformation texture has been stu...
AbstractUltra-fine-grained high-purity copper (99.99%) deformed by means of high-pressure torsion in...
The viscoplastic Φ-model belongs to the same class of self-consistent models but it is based on a ne...
The evolution of microstructure and texture gradient in warm Accumulative Roll Bonded Cu-Cu multilay...
It is shown by a crystallographic etching technique applicable to copper that deformation banding is...
Deformation banding is observed to be an important deformation mode and its inclusion into texture m...
Numerical simulations of texture development in polycrystalline oxygen-free high conductivity (OFHC)...
It is shown by a crystallographic etching technique that deformation banding is an important deforma...
In this work the microstructural features of pure copper were studied using two methods of severe pl...
The effect of strain path change during rolling has been investigated for copper and nickel using X-...
Sliding contact induces severe plastic deformation (SPD) at the surface of ductile materials and ind...
Surface mechanical treatments are known to introduce deformation heterogeneity, thus entailing a com...
The density of geometrically necessary dislocations (GND) obtained from the lattice curvature was st...
International audienceThe effect of grain size on the tensile plastic deformation of ultrafine-grain...
The evolution of crystallographic texture in polycrystalline copper and nickel has been studied. The...
The effect of strain path change during rolling on the evolution of deformation texture has been stu...
AbstractUltra-fine-grained high-purity copper (99.99%) deformed by means of high-pressure torsion in...
The viscoplastic Φ-model belongs to the same class of self-consistent models but it is based on a ne...
The evolution of microstructure and texture gradient in warm Accumulative Roll Bonded Cu-Cu multilay...