A computational model is developed to study the effect of coupling of thermally activated and drag-dependent processes during dislocation motion through an array of obstacles in metals. The model explicitly includes three successive, reiterative stages typical of such motion: the thermally activated break-off from an equilibrium position; accelerated drag-dependent motion; and the transition to the next equilibrium position controlled by the two previous stages. Calculation results are presented over a wide range of dislocation velocities, applied stresses and temperatures for a prototype f.c.c. metal close to copper. The presented model is also the first step for explaining quantitatively experimental findings regarding the effects of the ...
The formation of dislocation structures in crystalline metals is simulated with a computer simulatio...
Atomistic simulations of an accelerating edge dislocation were carried out to study the effects of d...
The majority of solid-state deformation and transformation processes involve coupled displacive-diff...
Dislocation motion through an array of obstacles is considered in terms of the potential energy of ...
A model is presented for thermally activated dislocation motion in concentrated alloys. It takes int...
Isolated kinks on thermally fluctuating edge, and edge dislocations in bcc iron are simulated under ...
Atomistic simulations of accelerating edge and srew dislocations were carried out to study the dynam...
A review of constitutive models based on the mechanics of dislocation motion is presented, with focu...
A dislocation dynamics (DD) model for plastic deformation, connecting the macroscopic mechanical pro...
An accurate prediction of the rate of dislocation motion is key to the fidelity of multi-scale plast...
The interaction of dislocations and solute atoms is key to understanding crystal plasticity in alloy...
Processes at fundamental length scales contribute collectively, in a statistical manner, to the macr...
The present work extends a recent model for plastic deformation of polycrystalline metals based on i...
A computational framework for the discrete dislocation dynamics simulation of body-centered cubic (b...
Article presents a 3D model which describes a motion of discrete dislocations in a crystalline mate...
The formation of dislocation structures in crystalline metals is simulated with a computer simulatio...
Atomistic simulations of an accelerating edge dislocation were carried out to study the effects of d...
The majority of solid-state deformation and transformation processes involve coupled displacive-diff...
Dislocation motion through an array of obstacles is considered in terms of the potential energy of ...
A model is presented for thermally activated dislocation motion in concentrated alloys. It takes int...
Isolated kinks on thermally fluctuating edge, and edge dislocations in bcc iron are simulated under ...
Atomistic simulations of accelerating edge and srew dislocations were carried out to study the dynam...
A review of constitutive models based on the mechanics of dislocation motion is presented, with focu...
A dislocation dynamics (DD) model for plastic deformation, connecting the macroscopic mechanical pro...
An accurate prediction of the rate of dislocation motion is key to the fidelity of multi-scale plast...
The interaction of dislocations and solute atoms is key to understanding crystal plasticity in alloy...
Processes at fundamental length scales contribute collectively, in a statistical manner, to the macr...
The present work extends a recent model for plastic deformation of polycrystalline metals based on i...
A computational framework for the discrete dislocation dynamics simulation of body-centered cubic (b...
Article presents a 3D model which describes a motion of discrete dislocations in a crystalline mate...
The formation of dislocation structures in crystalline metals is simulated with a computer simulatio...
Atomistic simulations of an accelerating edge dislocation were carried out to study the effects of d...
The majority of solid-state deformation and transformation processes involve coupled displacive-diff...