arXiv · 1106.5610
Dislocation dynamics simulations with climb: kinetics of dislocation loop coarsening controlled by bulk diffusion
Abstract
Dislocation climb mobilities, assuming vacancy bulk diffusion, are derived and implemented in dislocation dynamics simulations to study the coarsening of vacancy prismatic loops in fcc metals. When loops cannot glide, the comparison of the simulations with a coarsening model based on the line tension approximation shows a good agreement. Dislocation dynamics simulations with both glide and climb are then performed. Allowing for glide of the loops along their prismatic cylinders leads to faster coarsening kinetics, as direct coalescence of the loops is now possible.
Explore related subjects
Keep this discovery
Botond Bakó, Emmanuel Clouet, Laurent Dupuy, Marc Blétry. 2011-06-28. Dislocation dynamics simulations with climb: kinetics of dislocation loop coarsening controlled by bulk diffusion. https://doi.org/10.1080/14786435.2011.573815
Cite the original work for its findings. Save a collection to share your selection of sources.