A discrete mechanics approach to modeling the dynamics of dislocations in BCC single crystals is presented. Ideas are borrowed from discrete differential calculus and algebraic topology and suitably adapted to crystal lattices. In particular, the extension of a crystal lattice to a CW complex allows for convenient manipulation of forms and fields defined over the crystal. Dislocations are treated within the theory as energy-minimizing structures that lead to locally lattice-invariant but globally incompatible eigendeformations. The discrete nature of the theory eliminates the need for regularization of the core singularity and inherently allows for dislocation reactions and complicated topological transitions. The quantization of slip to in...
We present an application of the discrete dislocation theory to the characterization of the energeti...
Motion of screw dislocations in BCC materials at low temperature is believed to be related to the fo...
This work introduces a model for large-strain, geometrically nonlinear elasto-plastic dynamics in si...
A discrete mechanics approach to modeling the dynamics of dislocations in BCC single crystals is pre...
This article is concerned with the development of a discrete theory of crystal elasticity and disloc...
This article is concerned with the development of a discrete theory of crystal elasticity and disloc...
We consider a simple discrete model for screw dislocations in crystals. Using a variational discrete...
The current work is concerned with a number of theoretical and numerical aspects of the continuum mo...
Plastic deformation of crystalline metals mainly takes place by the nucleation and motion of disloca...
A continuum dislocation dynamics model was developed for simulation of the deformation of Face Centr...
We present variational approaches (developed in [3,4,11]) to the study of statics and dynamics of sc...
Plastic deformation of crystalline solids is of both scientific and techno-logical interest. Over a ...
The boundary conditions in three dimensional Dislocation Dynamics (DD) simulations have always been ...
In principle, the macroscopic plasticity properties of crystalline materials are derivable from the ...
A computational framework for the discrete dislocation dynamics simulation of body-centered cubic (b...
We present an application of the discrete dislocation theory to the characterization of the energeti...
Motion of screw dislocations in BCC materials at low temperature is believed to be related to the fo...
This work introduces a model for large-strain, geometrically nonlinear elasto-plastic dynamics in si...
A discrete mechanics approach to modeling the dynamics of dislocations in BCC single crystals is pre...
This article is concerned with the development of a discrete theory of crystal elasticity and disloc...
This article is concerned with the development of a discrete theory of crystal elasticity and disloc...
We consider a simple discrete model for screw dislocations in crystals. Using a variational discrete...
The current work is concerned with a number of theoretical and numerical aspects of the continuum mo...
Plastic deformation of crystalline metals mainly takes place by the nucleation and motion of disloca...
A continuum dislocation dynamics model was developed for simulation of the deformation of Face Centr...
We present variational approaches (developed in [3,4,11]) to the study of statics and dynamics of sc...
Plastic deformation of crystalline solids is of both scientific and techno-logical interest. Over a ...
The boundary conditions in three dimensional Dislocation Dynamics (DD) simulations have always been ...
In principle, the macroscopic plasticity properties of crystalline materials are derivable from the ...
A computational framework for the discrete dislocation dynamics simulation of body-centered cubic (b...
We present an application of the discrete dislocation theory to the characterization of the energeti...
Motion of screw dislocations in BCC materials at low temperature is believed to be related to the fo...
This work introduces a model for large-strain, geometrically nonlinear elasto-plastic dynamics in si...