The grain size dependence of the flow strength of polycrystals is analyzed using plane strain, discrete dislocation plasticity. Dislocations are modeled as line singularities in a linear elastic solid and plasticity occurs through the collective motion of large numbers of dislocations. Constitutive rules are used to model lattice resistance to dislocation motion, as well as dislocation nucleation, dislocation annihilation and the interaction with obstacles. The materials analyzed consist of micron scale grains having either one or three slip systems and two types of grain arrangements: either a checker-board pattern or randomly dispersed with a specified volume fraction. Calculations are carried out for materials with either a high density ...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
The dependence of shear yield strength on grain size is analyzed using discrete dislocation dynamics...
The grain size dependence of the flow strength of polycrystals is analyzed using plane strain, discr...
The grain size dependence of the flow strength of polycrystals is analyzed using plane strain, discr...
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 effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
Polycrystalline materials with mean grain size smaller than 10nm will soften if its mean grain size ...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
The dependence of shear yield strength on grain size is analyzed using discrete dislocation dynamics...
The grain size dependence of the flow strength of polycrystals is analyzed using plane strain, discr...
The grain size dependence of the flow strength of polycrystals is analyzed using plane strain, discr...
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 effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
Polycrystalline materials with mean grain size smaller than 10nm will soften if its mean grain size ...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
The effect of specimen size on the uniaxial deformation response of planar single crystals and polyc...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...