The mechanical behavior of single crystalline, micro-sized copper is investigated in the context of cantilever beam bending experiments. Particular focus is on the role of geometrically necessary dislocations (GNDs) during bending-dominated load conditions and their impact on the characteristic bending size effect. Three different sample sizes are considered in this work with main variation in thickness. A gradient extended crystal plasticity model is presented and applied in a three-dimensional finite-element (FE) framework considering slip system-based edge and screw components of the dislocation density vector. The underlying mathematical model contains non-standard evolution equations for GNDs, crystal-specific interaction relations, an...
Micro-cantilevers are increasingly used to extract elastic and plastic material properties through c...
A multiscale approach to modelling size effect in crystal plasticity is presented. At the microscale...
A gradient-enhanced crystal plasticity model is presented that explicitly accounts for the evolution...
The mechanical behavior of single crystalline, micro-sized copper is investigated in the context of ...
The mechanical behavior of single crystalline, micro-sized copper is investigated in the context of ...
The mechanical behavior of single crystalline, micro-sized copper is investigated in the context of ...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
\u3cp\u3ePlastic size effects in single crystals are investigated by using finite strain and small s...
© 2017, The Author(s). Plastic size effects in single crystals are investigated by using finite stra...
The observed mechanical behaviour of micron-sized samples raises fundamental questions about the inf...
AbstractMicro-cantilevers are increasingly used to extract elastic and plastic material properties t...
Micro-cantilevers are increasingly used to extract elastic and plastic material properties through c...
A multiscale approach to modelling size effect in crystal plasticity is presented. At the microscale...
A gradient-enhanced crystal plasticity model is presented that explicitly accounts for the evolution...
The mechanical behavior of single crystalline, micro-sized copper is investigated in the context of ...
The mechanical behavior of single crystalline, micro-sized copper is investigated in the context of ...
The mechanical behavior of single crystalline, micro-sized copper is investigated in the context of ...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
Plastic size effects in single crystals are investigated by using finite strain and small strain dis...
\u3cp\u3ePlastic size effects in single crystals are investigated by using finite strain and small s...
© 2017, The Author(s). Plastic size effects in single crystals are investigated by using finite stra...
The observed mechanical behaviour of micron-sized samples raises fundamental questions about the inf...
AbstractMicro-cantilevers are increasingly used to extract elastic and plastic material properties t...
Micro-cantilevers are increasingly used to extract elastic and plastic material properties through c...
A multiscale approach to modelling size effect in crystal plasticity is presented. At the microscale...
A gradient-enhanced crystal plasticity model is presented that explicitly accounts for the evolution...