A series of large-scale molecular dynamics simulations were conducted to investigate the scaling laws and the related atomistic deformation mechanisms of Cu monocrystal samples containing randomly placed nanovoids under adiabatic uniaxial strain compression. At onset of yielding, plastic deformation is accommodated by dislocations emitted from void surfaces as shear loops. The collapse of voids are observed by continuous emissions of dislocations from void surfaces and their interactions with further plastic deformation. The simulation results also suggest that the effect modulus, the yield stress and the energy aborption density of samples under uniaxial strain are linearly proportional to the relative density ρ. Moreover, the yield st...
Molecular dynamics simulations have been performed to investigate the atomistic deformation mechanis...
ABSTRACT The stress-strain behavior and incipient yield surface of nanoporous single crystal copper ...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
A series of large-scale molecular dynamics simulations were conducted to investigate the scaling law...
Uniaxial strain compression of a Ta monocrystal containing randomly placed nanovoids was studied u...
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 ...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
AbstractThis study is motivated by discrepancies between recent experimental compression test data o...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
Based on molecular dynamics, the effects of void and initial dislocation structure on incipient plas...
We used molecular dynamics simulations with system sizes up to 100 million atoms to simulate plastic...
Based on molecular dynamics, the effects of void and initial dislocation structure on incipient plas...
Isotropic tension is simulated in nanoscale polycrystalline copper with 10 nm grain size using large...
Nanoporous materials, can present an outstanding range of mechanical properties. Both molecular dyna...
Molecular dynamics simulations have been performed to investigate the atomistic deformation mechanis...
ABSTRACT The stress-strain behavior and incipient yield surface of nanoporous single crystal copper ...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
A series of large-scale molecular dynamics simulations were conducted to investigate the scaling law...
Uniaxial strain compression of a Ta monocrystal containing randomly placed nanovoids was studied u...
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 ...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
AbstractThis study is motivated by discrepancies between recent experimental compression test data o...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
Based on molecular dynamics, the effects of void and initial dislocation structure on incipient plas...
We used molecular dynamics simulations with system sizes up to 100 million atoms to simulate plastic...
Based on molecular dynamics, the effects of void and initial dislocation structure on incipient plas...
Isotropic tension is simulated in nanoscale polycrystalline copper with 10 nm grain size using large...
Nanoporous materials, can present an outstanding range of mechanical properties. Both molecular dyna...
Molecular dynamics simulations have been performed to investigate the atomistic deformation mechanis...
ABSTRACT The stress-strain behavior and incipient yield surface of nanoporous single crystal copper ...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...