We have investigated the microstructural changes in ductile porous metals during high pressure-high strain rate loading employing atomistic simulations and explored their relation to recent experiments on polycrystalline copper samples. Molecular-dynamics simulations of shocks in porous, single-crystal samples show the formation of nanograins due to localized massive plastic deformation induced by the presence of voids. In the process of grain formation the individual voids serve as dislocation sources. The efficiency of these sources is further enhanced by their collective interaction which eventually leads to very high dislocation densities. In agreement with experimental studies, the simulations display a temporal delay of the particle v...
AbstractThe micromechanisms related to ductile failure during dynamic loading of single crystal Cu a...
The dynamic evolution and interaction of defects under the conditions of shock loading in single cry...
We present systematic investigations examining the shock responses of nanoporous aluminum (np-Al) by...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
A series of large-scale molecular dynamics simulations were conducted to investigate the scaling law...
A series of large-scale molecular dynamics simulations were conducted to investigate the scaling law...
We here reveal the initiation of ductile failure in metals at the nanometer scale by molecular dynam...
Nanoporous materials, can present an outstanding range of mechanical properties. Both molecular dyna...
Uniaxial strain compression of a Ta monocrystal containing randomly placed nanovoids was studied u...
Nanoporous materials, can present an outstanding range of mechanical properties. Both molecular dyna...
Nanoporous materials, can present an outstanding range of mechanical properties. Both molecular dyna...
Ductile fracture generally relates to microscopic voiding and to strain localization in metallic mat...
Ductile fracture generally relates to microscopic voiding and to strain localization in metallic mat...
MD simulations in monocrystalline and nanocrystalline copper were carried out with LAMMPS to reveal ...
MD simulations in monocrystalline and nanocrystalline copper were carried out with LAMMPS to reveal ...
AbstractThe micromechanisms related to ductile failure during dynamic loading of single crystal Cu a...
The dynamic evolution and interaction of defects under the conditions of shock loading in single cry...
We present systematic investigations examining the shock responses of nanoporous aluminum (np-Al) by...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
A series of large-scale molecular dynamics simulations were conducted to investigate the scaling law...
A series of large-scale molecular dynamics simulations were conducted to investigate the scaling law...
We here reveal the initiation of ductile failure in metals at the nanometer scale by molecular dynam...
Nanoporous materials, can present an outstanding range of mechanical properties. Both molecular dyna...
Uniaxial strain compression of a Ta monocrystal containing randomly placed nanovoids was studied u...
Nanoporous materials, can present an outstanding range of mechanical properties. Both molecular dyna...
Nanoporous materials, can present an outstanding range of mechanical properties. Both molecular dyna...
Ductile fracture generally relates to microscopic voiding and to strain localization in metallic mat...
Ductile fracture generally relates to microscopic voiding and to strain localization in metallic mat...
MD simulations in monocrystalline and nanocrystalline copper were carried out with LAMMPS to reveal ...
MD simulations in monocrystalline and nanocrystalline copper were carried out with LAMMPS to reveal ...
AbstractThe micromechanisms related to ductile failure during dynamic loading of single crystal Cu a...
The dynamic evolution and interaction of defects under the conditions of shock loading in single cry...
We present systematic investigations examining the shock responses of nanoporous aluminum (np-Al) by...