The performance of crystalline materials varies depending on the considered scale. To understand the size dependence of materials properties, the interaction and evolution of defects are essential. As such, the role played by dislocations is crucial for modeling metallic materials. In essence, a dislocation is a default in the crystalline periodicity that creates long-range stress fields, which makes the modeling of dislocation dynamics a challenging problem. This thesis concentrates on the development of a novel multiscale method, which couples concurrently dislocation dynamics at nano- and micro-scales. A version of this method, the \textit{Coupled Atomistic and Discrete Dislocations} (CADD), exists for two-dimensional problems. Its three...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
Mechanical properties of solids bear great significance because of their importance in various field...
Mechanical properties of solids bear great significance because of their importance in various field...
Dislocation dynamics are important to understand material plasticity in small-sized materials. In ca...
Many phenomena in crystalline metals such as friction, nano-indentation and ductile fracture are pla...
Progress report on the implementation of 3d coupled atomistics and discrete dislocation
AbstractIn the “materials-genome” (MG) approach which is currently being advocated in the United Sta...
Capturing plasticity at realistic dislocation densities with high configurational complexity require...
Plastic deformation of crystalline materials is due to the motion of large numbers of dislocations, ...
In this work, a computational framework for discrete dislocation dynamics simulations of bcc metals,...
Current strategies of computational crystal plasticity that focus on individual atoms or dislocation...
Keynote TalkCurrent strategies of computational crystal plasticity that focus on individual atoms or...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2001.Include...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
La déformation plastique des matériaux cristallins classiques est surtout dominée par des dislocatio...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
Mechanical properties of solids bear great significance because of their importance in various field...
Mechanical properties of solids bear great significance because of their importance in various field...
Dislocation dynamics are important to understand material plasticity in small-sized materials. In ca...
Many phenomena in crystalline metals such as friction, nano-indentation and ductile fracture are pla...
Progress report on the implementation of 3d coupled atomistics and discrete dislocation
AbstractIn the “materials-genome” (MG) approach which is currently being advocated in the United Sta...
Capturing plasticity at realistic dislocation densities with high configurational complexity require...
Plastic deformation of crystalline materials is due to the motion of large numbers of dislocations, ...
In this work, a computational framework for discrete dislocation dynamics simulations of bcc metals,...
Current strategies of computational crystal plasticity that focus on individual atoms or dislocation...
Keynote TalkCurrent strategies of computational crystal plasticity that focus on individual atoms or...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2001.Include...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
La déformation plastique des matériaux cristallins classiques est surtout dominée par des dislocatio...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
Mechanical properties of solids bear great significance because of their importance in various field...
Mechanical properties of solids bear great significance because of their importance in various field...