The effects of grain size, source density, and misorientations on the dislocation configurational energy area density are investigated using two-dimensional discrete dislocation plasticity. Grain boundaries are modeled as impenetrable to dislocations. The considered grain size ranges from 0.4μm2 to 8.0μm2 . The configurational energy area density displays a strong size dependence, similar to the stress response. Two sets of materials are considered, with low and high source/obstacle density. The high-source-density specimens exhibit negative configurational energy, implying that the dislocation structure is more stable than for isolated dislocations . The contribution of misorientation to the configurational energy density is analyzed using...
AbstractA dislocation-density grain–boundary interaction scheme has been developed to account for th...
An exploration of dislocation microstructure evolution with different misorientation angles was perf...
International audienceA strain gradient crystal plasticity model is used to explore the grain size e...
Dislocation configurational energy is the term assigned to describe the elastically-stored energy as...
Polycrystalline materials with mean grain size smaller than 10nm will soften if its mean grain size ...
Polycrystalline metal with well-designed grain structure exhibits different strength and ductility c...
The grain size dependence of the flow strength of polycrystals is analyzed using plane strain, discr...
The dependence of shear yield strength on grain size is analyzed using discrete dislocation dynamics...
The stored energy of cold work is calculated for planar single crystals under tensile loading with p...
The interactions between dislocations and twinboundaries (TBs) are significantly affected by both in...
Evolving dislocation-density pile-ups at grain-boundaries (GBs) spanning a wide range of coincident ...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...
Discrete Dislocation Plasticity (DDP) modelling is employed to investigate various mi- crostructural...
Thesis (Ph.D.), Washington State UniversityMetallic materials, such as aluminum, ferrite, magnesium,...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...
AbstractA dislocation-density grain–boundary interaction scheme has been developed to account for th...
An exploration of dislocation microstructure evolution with different misorientation angles was perf...
International audienceA strain gradient crystal plasticity model is used to explore the grain size e...
Dislocation configurational energy is the term assigned to describe the elastically-stored energy as...
Polycrystalline materials with mean grain size smaller than 10nm will soften if its mean grain size ...
Polycrystalline metal with well-designed grain structure exhibits different strength and ductility c...
The grain size dependence of the flow strength of polycrystals is analyzed using plane strain, discr...
The dependence of shear yield strength on grain size is analyzed using discrete dislocation dynamics...
The stored energy of cold work is calculated for planar single crystals under tensile loading with p...
The interactions between dislocations and twinboundaries (TBs) are significantly affected by both in...
Evolving dislocation-density pile-ups at grain-boundaries (GBs) spanning a wide range of coincident ...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...
Discrete Dislocation Plasticity (DDP) modelling is employed to investigate various mi- crostructural...
Thesis (Ph.D.), Washington State UniversityMetallic materials, such as aluminum, ferrite, magnesium,...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...
AbstractA dislocation-density grain–boundary interaction scheme has been developed to account for th...
An exploration of dislocation microstructure evolution with different misorientation angles was perf...
International audienceA strain gradient crystal plasticity model is used to explore the grain size e...