Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried out to investigate dislocation nucleation from free surfaces. A principal aim of the analyses is to provide background for the development of dislocation nucleation criteria for use in discrete dislocation plasticity calculations. The molecular dynamics simulations use an embedded atom potential for aluminum. Bending is imposed on a strip by specifying a linear variation of displacement rate on opposite edges. The overall bending response is determined and the character of the dislocations nucleated is identified. It is found that the stress magnitudes at the instant of dislocation nucleation are nearly an order of magnitude smaller than for h...
The impingement of edge dislocations on nano-scale interfaces formed when bringing in contact alumin...
Dislocations are the main lattice defects responsible for the strength and ductility of crystalline ...
We have performed a systematic molecular dynamics study of the competition between crack growth and ...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
We perform atomistic simulations of dislocation nucleation in defect free crystals in 2 and 3 dimens...
This study contributes to the development of a 'fundamental, atomistic basis' to inform ma...
<p>We perform atomistic simulations of dislocation nucleation in defect free crystals in 2 and 3 dim...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
This work investigates the dislocation nucleation processes that occur at the tip of a crack in alum...
The impingement of edge dislocations on nano-scale interfaces formed when bringing in contact alumin...
Dislocation nucleation from free surfaces is one of the important process of plastic deformation of ...
The impingement of edge dislocations on nano-scale interfaces formed when bringing in contact alumin...
Dislocations are the main lattice defects responsible for the strength and ductility of crystalline ...
We have performed a systematic molecular dynamics study of the competition between crack growth and ...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
We perform atomistic simulations of dislocation nucleation in defect free crystals in 2 and 3 dimens...
This study contributes to the development of a 'fundamental, atomistic basis' to inform ma...
<p>We perform atomistic simulations of dislocation nucleation in defect free crystals in 2 and 3 dim...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
This work investigates the dislocation nucleation processes that occur at the tip of a crack in alum...
The impingement of edge dislocations on nano-scale interfaces formed when bringing in contact alumin...
Dislocation nucleation from free surfaces is one of the important process of plastic deformation of ...
The impingement of edge dislocations on nano-scale interfaces formed when bringing in contact alumin...
Dislocations are the main lattice defects responsible for the strength and ductility of crystalline ...
We have performed a systematic molecular dynamics study of the competition between crack growth and ...