AbstractA rate dependent strain gradient crystal plasticity framework is presented where the displacement and the plastic slip fields are considered as primary variables. These coupled fields are determined on a global level by solving simultaneously the linear momentum balance and the slip evolution equation, which is derived in a thermodynamically consistent manner. The formulation is based on the 1D theory presented in Yalcinkaya et al. (2011), where the patterning of plastic slip is obtained in a system with non-convex energetic hardening through a phenomenological double-well plastic potential. In the current multi-dimensional multi-slip analysis the non-convexity enters the framework through a latent hardening potential presented in O...
A rate dependent strain gradient plasticity framework for the description of plastic slip patterning...
A rate dependent strain gradient plasticity framework for the description of plastic slip patterning...
Microstructures in materials generally originate from a non-convex free energy, whereby the evolutio...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
AbstractA rate dependent strain gradient crystal plasticity framework is presented where the displac...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
At the microscopic scale, deformed crystalline materials usually show heterogeneous plastic deformat...
During forming processes most metals develop cellular dislocation structures due to dislocation slip...
A rate dependent strain gradient plasticity framework for the description of plastic slip patterning...
A rate dependent strain gradient plasticity framework for the description of plastic slip patterning...
Microstructures in materials generally originate from a non-convex free energy, whereby the evolutio...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
AbstractA rate dependent strain gradient crystal plasticity framework is presented where the displac...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
A rate dependent strain gradient crystal plasticity framework is presented where the displacement an...
At the microscopic scale, deformed crystalline materials usually show heterogeneous plastic deformat...
During forming processes most metals develop cellular dislocation structures due to dislocation slip...
A rate dependent strain gradient plasticity framework for the description of plastic slip patterning...
A rate dependent strain gradient plasticity framework for the description of plastic slip patterning...
Microstructures in materials generally originate from a non-convex free energy, whereby the evolutio...