In experiments on metallic microwires, size effects occur as a result of the interaction of dislocations with, e.g., grain boundaries. In continuum theories this behavior can be approximated using gradient plasticity. A numerically efficient geometrically linear gradient plasticity theory is developed considering the grain boundaries and implemented with finite elements. Simulations are performed for several metals in comparison to experiments and discrete dislocation dynamics simulations
AbstractIn this work, the effect of the material microstructural interface between two materials (i....
This book is a contribution to the further development of gradient plasticity. Several open question...
The present manuscript addresses the computational modeling of size effects in the plastic behavior ...
In experiments on metallic microwires, size effects occur as a result of the interaction of dislocat...
A physically-based dislocation theory of plasticity is derived within an extended continuum mechanic...
An overview of different methods for the derivation of extended continuum models is given. A gradien...
Classical crystal plasticity models fail to capture experimentally observed size effects, namely, th...
A single-crystal plasticity model as well as a gradient crystal plasticity model are used to describ...
This work deals with the homogenization of dislocation reactions across slip systems in a physically...
Au cours des dernières décennies, les développements significatifs de la microélectronique et des sy...
A comprehensive study on a finite-deformation gradient crystal-plasticity model which has been deriv...
International audienceA micromorphic single crystal plasticity model is formulated at nite deformati...
A rate-independent crystal plasticity model is implemented in which description of the hardening of ...
This thesis treats the modeling of grain size dependence inmicrostructure models of metals. It is sh...
AbstractThe effect of a linear applied shear stress gradient on the yield stress of a dislocation pi...
AbstractIn this work, the effect of the material microstructural interface between two materials (i....
This book is a contribution to the further development of gradient plasticity. Several open question...
The present manuscript addresses the computational modeling of size effects in the plastic behavior ...
In experiments on metallic microwires, size effects occur as a result of the interaction of dislocat...
A physically-based dislocation theory of plasticity is derived within an extended continuum mechanic...
An overview of different methods for the derivation of extended continuum models is given. A gradien...
Classical crystal plasticity models fail to capture experimentally observed size effects, namely, th...
A single-crystal plasticity model as well as a gradient crystal plasticity model are used to describ...
This work deals with the homogenization of dislocation reactions across slip systems in a physically...
Au cours des dernières décennies, les développements significatifs de la microélectronique et des sy...
A comprehensive study on a finite-deformation gradient crystal-plasticity model which has been deriv...
International audienceA micromorphic single crystal plasticity model is formulated at nite deformati...
A rate-independent crystal plasticity model is implemented in which description of the hardening of ...
This thesis treats the modeling of grain size dependence inmicrostructure models of metals. It is sh...
AbstractThe effect of a linear applied shear stress gradient on the yield stress of a dislocation pi...
AbstractIn this work, the effect of the material microstructural interface between two materials (i....
This book is a contribution to the further development of gradient plasticity. Several open question...
The present manuscript addresses the computational modeling of size effects in the plastic behavior ...