| openaire: EC/H2020/857470/EU//NOMATENAlloying metals with other elements is often done to improve the material strength or hardness. A key microscopic mechanism is precipitation hardening, where precipitates impede dislocation motion, but the role of such obstacles in determining the nature of collective dislocation dynamics remains to be understood. Here, three-dimensional discrete dislocation dynamics simulations of fcc single crystals are performed with fully coherent spherical precipitates from zero precipitate density up to p(p) = 10(21) m(-3) and at various dislocation-precipitate interaction strengths. When the dislocation-precipitate interactions do not play a major role, the yielding is qualitatively the same as for pure crystals...
In small-scale metallic systems, collective dislocation activity has been correlated with size effec...
This thesis focuses on the effects of slip-slip, slip-twin, and slip-precipitates interactions on st...
Dislocations are the carriers of plasticity in crystalline materials. Their collective interaction b...
| openaire: EC/H2020/857470/EU//NOMATENAlloying metals with other elements is often done to improve ...
| openaire: EC/H2020/857470/EU//NOMATENAlloying metals with other elements is often done to improve ...
Alloying metals with other elements is often done to improve the material strength or hardness. A ke...
Crystal plasticity occurs by deformation bursts due to the avalanchelike motion of dislocations. Her...
Crystal plasticity occurs by deformation bursts due to the avalanchelike motion of dislocations. Her...
Three-dimensional (3-D) dislocation dynamics simulations were employed to examine the fundamental me...
Collective motion of dislocations is governed by the obstacles they encounter. In pure crystals, dis...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
Plastic deformation of crystalline materials is governed by the features of stress-driven motion of ...
Plastic deformation of crystalline materials is governed by the features of stress-driven motion of ...
Crystal plasticity occurs by deformation bursts due to the avalanchelike motion of dislocations. Her...
Plastic deformation in crystalline materials consists of an ensemble of collective dislocation glide...
In small-scale metallic systems, collective dislocation activity has been correlated with size effec...
This thesis focuses on the effects of slip-slip, slip-twin, and slip-precipitates interactions on st...
Dislocations are the carriers of plasticity in crystalline materials. Their collective interaction b...
| openaire: EC/H2020/857470/EU//NOMATENAlloying metals with other elements is often done to improve ...
| openaire: EC/H2020/857470/EU//NOMATENAlloying metals with other elements is often done to improve ...
Alloying metals with other elements is often done to improve the material strength or hardness. A ke...
Crystal plasticity occurs by deformation bursts due to the avalanchelike motion of dislocations. Her...
Crystal plasticity occurs by deformation bursts due to the avalanchelike motion of dislocations. Her...
Three-dimensional (3-D) dislocation dynamics simulations were employed to examine the fundamental me...
Collective motion of dislocations is governed by the obstacles they encounter. In pure crystals, dis...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
Plastic deformation of crystalline materials is governed by the features of stress-driven motion of ...
Plastic deformation of crystalline materials is governed by the features of stress-driven motion of ...
Crystal plasticity occurs by deformation bursts due to the avalanchelike motion of dislocations. Her...
Plastic deformation in crystalline materials consists of an ensemble of collective dislocation glide...
In small-scale metallic systems, collective dislocation activity has been correlated with size effec...
This thesis focuses on the effects of slip-slip, slip-twin, and slip-precipitates interactions on st...
Dislocations are the carriers of plasticity in crystalline materials. Their collective interaction b...