Molecular dynamics simulations were carried out to study the mechanical properties of Cu(0 0 1)/Ni(0 0 1) interface boundaries with different twist angles subjected to uniaxial loading. The results obtained revealed that square misfit dislocations networks can be observed when the twist angle was lower than 15.124°, and the density of misfit dislocations increased with increasing twist angle. Face defects were formed when the twist angle was higher than 15.124°. It has been found that the interface configuration had a significant effect on the interface strength of the Cu/Ni system. The yield stress was found to decrease first with increasing twist angle and it reached its lowest value at 5.906°twist angle. Subsequently, it increased with i...
The exceptional mechanical properties of metallic nanolayers originate from the high density of nano...
Nanolayered metallic composites have attracted intensive scientific interests due to their ultrahigh...
The energetics of slip–coherent twin boundary (CTB) interactions are established under tensile defor...
Molecular dynamics (MD) simulations of Cu/Ni multilayers with coherent, semi-coherent and coherent t...
The strengthening mechanisms in bimetallic Cu/Ni thin layers are investigated using a hybrid approac...
Nickel/Copper (Ni/Cu) interfaces are applied in various fields such as manufacturing of thermoelectr...
3D molecular dynamics simulations were employed to investigate the influence of misfit dislocations ...
Nanostructured metals possess ultra-high mechanical strength. A well-established consensus is that t...
Molecular dynamics (MD) simulations are performed to study crystalline plasticity during nanoindenta...
We use a combination of atom-swap Monte-Carlo (MC) and molecular dynamics (MD) to study the structur...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
The structural evolution of misfit dislocation networks at γ/γ′ phase interfaces in Ni-based single ...
In this study, a microscale interface consisting of amorphous polyethylene (PE) chains with the unit...
Abstract: Molecular dynamics (MD) simulations are performed to study crystalline plasticity during n...
Thesis: S.B., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
The exceptional mechanical properties of metallic nanolayers originate from the high density of nano...
Nanolayered metallic composites have attracted intensive scientific interests due to their ultrahigh...
The energetics of slip–coherent twin boundary (CTB) interactions are established under tensile defor...
Molecular dynamics (MD) simulations of Cu/Ni multilayers with coherent, semi-coherent and coherent t...
The strengthening mechanisms in bimetallic Cu/Ni thin layers are investigated using a hybrid approac...
Nickel/Copper (Ni/Cu) interfaces are applied in various fields such as manufacturing of thermoelectr...
3D molecular dynamics simulations were employed to investigate the influence of misfit dislocations ...
Nanostructured metals possess ultra-high mechanical strength. A well-established consensus is that t...
Molecular dynamics (MD) simulations are performed to study crystalline plasticity during nanoindenta...
We use a combination of atom-swap Monte-Carlo (MC) and molecular dynamics (MD) to study the structur...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
The structural evolution of misfit dislocation networks at γ/γ′ phase interfaces in Ni-based single ...
In this study, a microscale interface consisting of amorphous polyethylene (PE) chains with the unit...
Abstract: Molecular dynamics (MD) simulations are performed to study crystalline plasticity during n...
Thesis: S.B., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
The exceptional mechanical properties of metallic nanolayers originate from the high density of nano...
Nanolayered metallic composites have attracted intensive scientific interests due to their ultrahigh...
The energetics of slip–coherent twin boundary (CTB) interactions are established under tensile defor...