Plastic deformation and alloying of nanocrystalline Ni–Fe is studied by means of atomic scale computer simulations. By using a combination of Monte-Carlo and molecular dynamics methods we find that solutes have an ordering tendency even if grain sizes are in the nanometer regime, where the phase field of the ordered state is widened as compared to larger grain sizes. Tensile testing of disordered structures with various elemental distributions and the simultaneous analysis of intragranular defects reveal that solid solution strengthening is absent for the studied grain sizes. The composition and relaxation state of the grain boundary control the strength of the material, which is also found for ordered structures (L12), where dislocation ac...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
We used molecular dynamics simulations with system sizes up to 100 million atoms to simulate plastic...
Plastic deformation and alloying of nanocrystalline Ni–Fe is studied by means of atomic scale comput...
Due to their extraordinary mechanical properties, the field of research on nanocrystalline metals an...
Nanocrystalline metals and alloys have been proven to possess unprecedentedly higher tensile strengt...
Hybrid molecular dynamics and Monte-Carlo simulations on the deformation behavior of nanocrystalline...
Plastic deformation of nanocrystalline Pd-Au is studied by means of atomic-scale computer simulation...
Plastic deformation of nanocrystalline Pd and Cu as well as the demixing systems Cu–Nb and Cu–Fe is ...
Nanocrystalline (NC) metals with grain sizes \u3c100 nm have attracted a lot of attention in the mat...
Nanocrystalline (NC) materials, defined structurally by having average grain sizes less than 100nm, ...
The remarkably high strength of nanocrystalline metals is of great interest to researchers and seems...
The prospect of realizing materials with highest strengths and other unique properties has driven a ...
The optimum grain size, which is the transition point from grain-size hardening to grain-size soften...
Dislocation-mediated plasticity in alloy systems is strongly affected by the concentration and distr...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
We used molecular dynamics simulations with system sizes up to 100 million atoms to simulate plastic...
Plastic deformation and alloying of nanocrystalline Ni–Fe is studied by means of atomic scale comput...
Due to their extraordinary mechanical properties, the field of research on nanocrystalline metals an...
Nanocrystalline metals and alloys have been proven to possess unprecedentedly higher tensile strengt...
Hybrid molecular dynamics and Monte-Carlo simulations on the deformation behavior of nanocrystalline...
Plastic deformation of nanocrystalline Pd-Au is studied by means of atomic-scale computer simulation...
Plastic deformation of nanocrystalline Pd and Cu as well as the demixing systems Cu–Nb and Cu–Fe is ...
Nanocrystalline (NC) metals with grain sizes \u3c100 nm have attracted a lot of attention in the mat...
Nanocrystalline (NC) materials, defined structurally by having average grain sizes less than 100nm, ...
The remarkably high strength of nanocrystalline metals is of great interest to researchers and seems...
The prospect of realizing materials with highest strengths and other unique properties has driven a ...
The optimum grain size, which is the transition point from grain-size hardening to grain-size soften...
Dislocation-mediated plasticity in alloy systems is strongly affected by the concentration and distr...
There has been a growing research interest in understanding the mechanical behaviors and the deforma...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
We used molecular dynamics simulations with system sizes up to 100 million atoms to simulate plastic...