This paper develops a thermodynamically consistent gradient theory of single-crystal plasticity using the principle of virtual power as a paradigm to develop appropriate balance laws for forces and energy. The resulting theory leads to a system of microscopic force balances, one balance for each slip system, and to an energy balance that accounts for power expended during plastic flow via microscopic forces acting in concert with slip-rates and slip-rate gradients. Central to the theory are an internal energy and entropy, plastic in nature, dependent on densities that account for the accumulation of glide dislocations as well as geometrically necessary dislocations – and that, consequently, represent quantities associated with cold work. Ou...
We propose a deformation theory of strain gradient crystal plasticity that accounts for the density ...
AbstractThe effect of initial texture on the stored energy is investigated. Uniaxially loaded polycr...
We derive a continuum-level plasticity model for polycrystalline materials in the high energy densit...
The stored energy of cold work is calculated for planar single crystals under tensile loading with p...
A theory of single-crystal gradient thermoplasticity that accounts for the stored energy of cold wor...
The stored energy of cold work is calculated for planar single crystals under tensile loading with p...
Experimental data associated with plastic deformations indicate that the temperature is less than th...
Irreversible thermodynamics is employed as a framework to describe plastic deformation in pure metal...
This work aims to describe plastic deformation and microstructure evolution of metals at various sca...
Irreversible thermodynamics is employed to describe plastic deformation of metallic single crystals ...
This work, standing as an attempt to understand and mathematically model the small scale materials t...
Irreversible thermodynamics is employed as a framework to describe plastic deformation in pure metal...
An overview of different methods for the derivation of extended continuum models is given. A gradien...
The thermodynamic theory of dislocation-enabled plasticity is based on two unconventional hypotheses...
Gurtin recently proposed a strain-gradient theory for crystal plasticity in which the gradient effec...
We propose a deformation theory of strain gradient crystal plasticity that accounts for the density ...
AbstractThe effect of initial texture on the stored energy is investigated. Uniaxially loaded polycr...
We derive a continuum-level plasticity model for polycrystalline materials in the high energy densit...
The stored energy of cold work is calculated for planar single crystals under tensile loading with p...
A theory of single-crystal gradient thermoplasticity that accounts for the stored energy of cold wor...
The stored energy of cold work is calculated for planar single crystals under tensile loading with p...
Experimental data associated with plastic deformations indicate that the temperature is less than th...
Irreversible thermodynamics is employed as a framework to describe plastic deformation in pure metal...
This work aims to describe plastic deformation and microstructure evolution of metals at various sca...
Irreversible thermodynamics is employed to describe plastic deformation of metallic single crystals ...
This work, standing as an attempt to understand and mathematically model the small scale materials t...
Irreversible thermodynamics is employed as a framework to describe plastic deformation in pure metal...
An overview of different methods for the derivation of extended continuum models is given. A gradien...
The thermodynamic theory of dislocation-enabled plasticity is based on two unconventional hypotheses...
Gurtin recently proposed a strain-gradient theory for crystal plasticity in which the gradient effec...
We propose a deformation theory of strain gradient crystal plasticity that accounts for the density ...
AbstractThe effect of initial texture on the stored energy is investigated. Uniaxially loaded polycr...
We derive a continuum-level plasticity model for polycrystalline materials in the high energy densit...