Shock compression of mono- and nanocrystalline (nc) nickel is simulated over a range of pressures (10-80 GPa) and compared with experimental results. Contributions to the strain from the various mechanisms of plastic deformation such as partial dislocations, perfect dislocations and twins are quantified in the nc samples. The effect of stress unloading, a phenomenon often neglected in MD simulations, on dislocation behavior is computed. It is shown that a large fraction of the dislocations generated during compression is annihilated upon unloading. The present analysis resolves a disagreement consistently observed between MD computations and experimental results. Analytical models are applied to predict the critical pressures for the cell-t...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
Abstract While b.c.c. metals deform plastically by dislocation motion or deformation twinning, the a...
Molecular dynamics simulations were used to study the plastic behavior of monocrystalline nickel und...
Quasi-isentropic compression experiments (ICE) of monocrystalline copper and nanocrystalline nickel ...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
Molecular dynamics simulations of nanocrystalline (nc) copper under shock loading show an unexpected...
Molecular dynamics simulations of single crystal nickel were performed to analyze the influence of s...
Nanocrystalline materials with grain sizes smaller than 100 nm have attracted extensive research in ...
Despite a number of previous nonequilibrium molecular dynamics (MD) studies into plasticity in face-...
Nanocrystalline materials with grain sizes smaller than 100 nm have attracted extensive research in ...
A combination of atomistic simulations and experiments is used to study the microscopic deformation ...
Nanocrystalline (NC) metals with grain sizes \u3c100 nm have attracted a lot of attention in the mat...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
Abstract While b.c.c. metals deform plastically by dislocation motion or deformation twinning, the a...
Molecular dynamics simulations were used to study the plastic behavior of monocrystalline nickel und...
Quasi-isentropic compression experiments (ICE) of monocrystalline copper and nanocrystalline nickel ...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
Molecular dynamics simulations of nanocrystalline (nc) copper under shock loading show an unexpected...
Molecular dynamics simulations of single crystal nickel were performed to analyze the influence of s...
Nanocrystalline materials with grain sizes smaller than 100 nm have attracted extensive research in ...
Despite a number of previous nonequilibrium molecular dynamics (MD) studies into plasticity in face-...
Nanocrystalline materials with grain sizes smaller than 100 nm have attracted extensive research in ...
A combination of atomistic simulations and experiments is used to study the microscopic deformation ...
Nanocrystalline (NC) metals with grain sizes \u3c100 nm have attracted a lot of attention in the mat...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
The mechanical properties of nickel nanowire at different temperatures are studied using molecular d...
Abstract While b.c.c. metals deform plastically by dislocation motion or deformation twinning, the a...