Deformation and fracture processes in engineering materials often require simultaneous descriptions over a range of length and time scales, with each scale using a different computational technique. Here we present a high-performance parallel 3D computing framework for executing large multiscale studies that couple an atomic domain, modeled using molecular dynamics and a continuum domain, modeled using explicit finite elements. We use the robust Coupled Atomistic/Discrete-Dislocation (CADD) displacement-coupling method, but without the transfer of dislocations between atoms and continuum. The main purpose of the work is to provide a multiscale implementation within an existing large-scale parallel molecular dynamics code (LAMMPS) that enabl...
Multiscale modeling approaches have attracted a lot of attention in the past decade due to the compu...
Large scale molecular dynamics (MD) simulations are now commonly utilized to study materials at extr...
Large scale molecular dynamics (MD) simulations are now commonly utilized to study materials at extr...
Capturing plasticity at realistic dislocation densities with high configurational complexity require...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
Full atomistic Molecular Dynamics (MD) simulations are very accurate but too costly; however, atomis...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
Progress report on the implementation of 3d coupled atomistics and discrete dislocation
Many phenomena in crystalline metals such as friction, nano-indentation and ductile fracture are pla...
This paper presents a concurrent simulation technique for analysing the deformation of systems that ...
A computational method for multiscale modeling of plasticity is presented wherein each dislocation i...
A partitioned-domain multiscale method is a computational framework in which certain key regions are...
This thesis is about the study of simulation of solids by multiscale coupling methods (atomic method...
The performance of crystalline materials varies depending on the considered scale. To understand the...
Dislocation dynamics are important to understand material plasticity in small-sized materials. In ca...
Multiscale modeling approaches have attracted a lot of attention in the past decade due to the compu...
Large scale molecular dynamics (MD) simulations are now commonly utilized to study materials at extr...
Large scale molecular dynamics (MD) simulations are now commonly utilized to study materials at extr...
Capturing plasticity at realistic dislocation densities with high configurational complexity require...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
Full atomistic Molecular Dynamics (MD) simulations are very accurate but too costly; however, atomis...
A computational method (CADD) is presented whereby a continuum region containing dislocation defects...
Progress report on the implementation of 3d coupled atomistics and discrete dislocation
Many phenomena in crystalline metals such as friction, nano-indentation and ductile fracture are pla...
This paper presents a concurrent simulation technique for analysing the deformation of systems that ...
A computational method for multiscale modeling of plasticity is presented wherein each dislocation i...
A partitioned-domain multiscale method is a computational framework in which certain key regions are...
This thesis is about the study of simulation of solids by multiscale coupling methods (atomic method...
The performance of crystalline materials varies depending on the considered scale. To understand the...
Dislocation dynamics are important to understand material plasticity in small-sized materials. In ca...
Multiscale modeling approaches have attracted a lot of attention in the past decade due to the compu...
Large scale molecular dynamics (MD) simulations are now commonly utilized to study materials at extr...
Large scale molecular dynamics (MD) simulations are now commonly utilized to study materials at extr...