Molecular dynamics simulations were used to study the plastic behavior of monocrystalline nickel under shock compression along the [100] and [110] orientations. The shock Hugoniot relation, local stress curve, and process of microstructure development were determined. Results showed the apparent anisotropic behavior of monocrystalline nickel under shock compression. The separation of elastic and plastic waves was also obvious. Plastic deformation was more severely altered along the [110] direction than the [100] direction. The main microstructure phase transformed from face-centered cubic to body-centered cubic and generated a large-scale and low-density stacking fault along the family of { 111 } crystal planes under shock compression along...
Classical molecular dynamics has been applied to investigations into elastic-plastic properties of s...
Large-scale molecular dynamics (MD) simulations are performed to investigate shock propagation in si...
Nonequilibrium molecular-dynamics simulations of shock waves in three-dimensional 10-million atom fa...
Shock compression of mono- and nanocrystalline (nc) nickel is simulated over a range of pressures (1...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
Monocrystalline copper with orientations of [001] and [221] was subjected to shock/recovery experime...
Despite a number of previous nonequilibrium molecular dynamics (MD) studies into plasticity in face-...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
Shock-induced plasticity in FCC crystals has been demonstrated in many experimental and numerical si...
Quasi-isentropic compression experiments (ICE) of monocrystalline copper and nanocrystalline nickel ...
Nanocrystalline materials with grain sizes smaller than 100 nm have attracted extensive research in ...
In this study, the change in microstructure during large deformation is simulated using mo...
Large-scale molecular dynamics (MD) simulations are performed to investigate shock propagation in si...
Nonequilibrium molecular dynamics (NEMD) simulations of shock waves in single crystals have shown th...
Classical molecular dynamics has been applied to investigations into elastic-plastic properties of s...
Large-scale molecular dynamics (MD) simulations are performed to investigate shock propagation in si...
Nonequilibrium molecular-dynamics simulations of shock waves in three-dimensional 10-million atom fa...
Shock compression of mono- and nanocrystalline (nc) nickel is simulated over a range of pressures (1...
Molecular dynamics study of the plasticity nucleation mechanisms in a Ni nanocrystalline sample unde...
Monocrystalline copper with orientations of [001] and [221] was subjected to shock/recovery experime...
Despite a number of previous nonequilibrium molecular dynamics (MD) studies into plasticity in face-...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
Shock-induced plasticity in FCC crystals has been demonstrated in many experimental and numerical si...
Quasi-isentropic compression experiments (ICE) of monocrystalline copper and nanocrystalline nickel ...
Nanocrystalline materials with grain sizes smaller than 100 nm have attracted extensive research in ...
In this study, the change in microstructure during large deformation is simulated using mo...
Large-scale molecular dynamics (MD) simulations are performed to investigate shock propagation in si...
Nonequilibrium molecular dynamics (NEMD) simulations of shock waves in single crystals have shown th...
Classical molecular dynamics has been applied to investigations into elastic-plastic properties of s...
Large-scale molecular dynamics (MD) simulations are performed to investigate shock propagation in si...
Nonequilibrium molecular-dynamics simulations of shock waves in three-dimensional 10-million atom fa...