The tensile response of single crystal films passivated on two sides is analysed using climb enabled discrete dislocation plasticity. Plastic deformation is modelled through the motion of edge dislocations in an elastic solid with a lattice resistance to dislocation motion, dislocation nucleation, dislocation interaction with obstacles and dislocation annihilation incorporated through a set of constitutive rules. The dislocation motion in the films is by glide-only or by climb-assisted glide whereas in the surface passivation layers dislocation motion occurs by glide-only and penalized by a friction stress. For realistic values of the friction stress, the size dependence of the flow strength of the oxidised films was mainly a geometrical ef...
3-D discrete dislocation dynamics simulations were used to investigate the size-dependent plasticity...
Thermal stress evolution in polycrystalline thin films is analyzed using discrete dislocation plasti...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...
The tensile response of single crystal films passivated on two sides is analysed using climb enabled...
In this paper, dislocation climb is incorporated in a two-dimensional discrete dislocation dynamics ...
A small-strain two-dimensional discrete dislocation plasticity (DDP) framework is developed wherein ...
Three-dimensional dislocation dynamics simulations were used to examine the role of surface passivat...
Crystalline films grown epitaxially on substrate consisting of different crystalline material are of...
Two-dimensional discrete dislocation plasticity simulations of the evolution of thermal stress in si...
Discrete dislocation simulations of thin films on semi-infinite substrates under cyclic thermal load...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...
A line tension approach is reviewed to model slip transfer across tilt grain boundaries (GBs). It is...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
In a recent publication, we derived the mesoscale continuum theory of plasticity for multiple-slip s...
Experimental measurements and computational results for the evolution of plastic deformation in free...
3-D discrete dislocation dynamics simulations were used to investigate the size-dependent plasticity...
Thermal stress evolution in polycrystalline thin films is analyzed using discrete dislocation plasti...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...
The tensile response of single crystal films passivated on two sides is analysed using climb enabled...
In this paper, dislocation climb is incorporated in a two-dimensional discrete dislocation dynamics ...
A small-strain two-dimensional discrete dislocation plasticity (DDP) framework is developed wherein ...
Three-dimensional dislocation dynamics simulations were used to examine the role of surface passivat...
Crystalline films grown epitaxially on substrate consisting of different crystalline material are of...
Two-dimensional discrete dislocation plasticity simulations of the evolution of thermal stress in si...
Discrete dislocation simulations of thin films on semi-infinite substrates under cyclic thermal load...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...
A line tension approach is reviewed to model slip transfer across tilt grain boundaries (GBs). It is...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
In a recent publication, we derived the mesoscale continuum theory of plasticity for multiple-slip s...
Experimental measurements and computational results for the evolution of plastic deformation in free...
3-D discrete dislocation dynamics simulations were used to investigate the size-dependent plasticity...
Thermal stress evolution in polycrystalline thin films is analyzed using discrete dislocation plasti...
Discrete dislocation dynamics simulations are carried out to systematically investigate the microstr...