AbstractStrain gradient crystal plasticity attempts to predict material size effects by taking into account geometrically necessary dislocations that are required to accommodate gradients of crystallographic slip. Since these dislocations have a non-zero net Burgers vector within the material, dislocation induced long range stresses result in a back stress that influences the effective driving force for crystallographic slip. A dislocation induced back stress formulation is proposed in which the full tensorial nature of the dislocation stress state is included in the continuum description. The significance of this proposed back stress formulation is that it intrinsically includes latent kinematic hardening from dislocations lying on all sli...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
The effect of loading conditions on the tensile stress versus strain response of micron-sized planar...
The effect of loading conditions on the tensile stress versus strain response of micron-sized planar...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
AbstractStrain gradient crystal plasticity attempts to predict material size effects by taking into ...
The present contribution addresses a crystal plasticity formulation which incorporates hardening eff...
We propose a deformation theory of strain gradient crystal plasticity that accounts for the density ...
AbstractA finite-strain higher-order gradient crystal plasticity model accounting for the backstress...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
The effect of loading conditions on the tensile stress versus strain response of micron-sized planar...
The effect of loading conditions on the tensile stress versus strain response of micron-sized planar...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
Strain gradient crystal plasticity attempts to predict material size effects by taking into account ...
AbstractStrain gradient crystal plasticity attempts to predict material size effects by taking into ...
The present contribution addresses a crystal plasticity formulation which incorporates hardening eff...
We propose a deformation theory of strain gradient crystal plasticity that accounts for the density ...
AbstractA finite-strain higher-order gradient crystal plasticity model accounting for the backstress...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
A strain gradient-dependent crystal plasticity approach is presented to model the constitutive behav...
The effect of loading conditions on the tensile stress versus strain response of micron-sized planar...
The effect of loading conditions on the tensile stress versus strain response of micron-sized planar...