Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrate is analyzed numerically. The calculations are carried out within a two-dimensional plane strain framework. The film-substrate system is subject to a prescribed temperature decrease, with the coefficient of thermal expansion of the metal film larger than that of the substrate. Plastic deformation arises solely from the glide of edge dislocations. The dislocations nucleate from pre-existing Frank-Read sources, with the grain boundaries and film-substrate interface acting solely as impenetrable barriers to dislocation glide. At each stage of loading, a boundary value problem is solved to enforce the boundary conditions and the stress field and...
According to experimental findings there are types of loading for which it is more difficult to plas...
According to experimental findings there are types of loading for which it is more difficult to plas...
3-D discrete dislocation dynamics simulations were used to investigate the size-dependent plasticity...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
A discrete dislocation plasticity analysis of plastic deformation in metal thin films caused by ther...
Thermal stress evolution in polycrystalline thin films is analyzed using discrete dislocation plasti...
Thermal stress evolution in polycrystalline thin films is analyzed using discrete dislocation plasti...
Two-dimensional discrete dislocation plasticity simulations of the evolution of thermal stress in si...
Two-dimensional discrete dislocation plasticity simulations of the evolution of thermal stress in si...
thermal stress in single crystal thin films on a rigid substrate are used to study size effects. The...
According to experimental findings there are types of loading for which it is more difficult to plas...
According to experimental findings there are types of loading for which it is more difficult to plas...
3-D discrete dislocation dynamics simulations were used to investigate the size-dependent plasticity...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
Stress development and relaxation in polycrystalline thin films perfectly bonded to a stiff substrat...
A discrete dislocation plasticity analysis of plastic deformation in metal thin films caused by ther...
Thermal stress evolution in polycrystalline thin films is analyzed using discrete dislocation plasti...
Thermal stress evolution in polycrystalline thin films is analyzed using discrete dislocation plasti...
Two-dimensional discrete dislocation plasticity simulations of the evolution of thermal stress in si...
Two-dimensional discrete dislocation plasticity simulations of the evolution of thermal stress in si...
thermal stress in single crystal thin films on a rigid substrate are used to study size effects. The...
According to experimental findings there are types of loading for which it is more difficult to plas...
According to experimental findings there are types of loading for which it is more difficult to plas...
3-D discrete dislocation dynamics simulations were used to investigate the size-dependent plasticity...