AbstractThe mechanical behavior of Cu-Zr-Al metallic-glass thin films under indentation was studied with the molecular dynamics simulation methodology to investigate changes of microstructures through degrees of elastic anisotropy. In this work, the (Cu50Zr50)100-xAlx, where x is measured by atomic percentage, was studied by molecular dynamics (MD) simulation. Our metallic-glass models were first sputter-deposited on crystalline substrate by MD with consideration argon working gas. The interaction between argon working gas and metallic atoms was modeled by the pair-wise Moliere potential. The as-deposited films were amorphous after equilibration, and their mechanical properties were characterized by ultra-nano-indentation simulations by MD ...
A binary metallic glass (MG) Cu49.3Zr50.7 in the form of thin film was successfully grown on a Si (1...
In this paper, we study nanoindentation in Cu64Zr36 metallic glass (MG) nanopillars with different a...
The effects of surface notches and loading mode on the mechanical deformation and mechanics of ZrNi ...
AbstractThe mechanical behavior of Cu-Zr-Al metallic-glass thin films under indentation was studied ...
A series of molecular dynamics simulations of nanoindentation in a two-dimensional model of a thin m...
The atomic structure of a Cu13Ni34Pd53 metallic glass was studied by molecular dynamics simulation a...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
The paper investigates the nanoindentation process with different rates in the Cu (001) of FCC syste...
The nanoscopic deformation behaviors in a ZrCu metallic glass model during loading-unloading process...
The mechanical properties of metallic glasses cannot only be influenced by their chemical compositio...
Molecular dynamics with an embedded-atom method potential is used to simulate the nanoindentation of...
Molecular dynamics (MD) simulations are carried out for cyclic nano-indentation on sintered ...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
We presentmolecular dynamics simulations of nanoindentation in order to investigate the effects of s...
A binary metallic glass (MG) Cu49.3Zr50.7 in the form of thin film was successfully grown on a Si (1...
In this paper, we study nanoindentation in Cu64Zr36 metallic glass (MG) nanopillars with different a...
The effects of surface notches and loading mode on the mechanical deformation and mechanics of ZrNi ...
AbstractThe mechanical behavior of Cu-Zr-Al metallic-glass thin films under indentation was studied ...
A series of molecular dynamics simulations of nanoindentation in a two-dimensional model of a thin m...
The atomic structure of a Cu13Ni34Pd53 metallic glass was studied by molecular dynamics simulation a...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
The paper investigates the nanoindentation process with different rates in the Cu (001) of FCC syste...
The nanoscopic deformation behaviors in a ZrCu metallic glass model during loading-unloading process...
The mechanical properties of metallic glasses cannot only be influenced by their chemical compositio...
Molecular dynamics with an embedded-atom method potential is used to simulate the nanoindentation of...
Molecular dynamics (MD) simulations are carried out for cyclic nano-indentation on sintered ...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
We presentmolecular dynamics simulations of nanoindentation in order to investigate the effects of s...
A binary metallic glass (MG) Cu49.3Zr50.7 in the form of thin film was successfully grown on a Si (1...
In this paper, we study nanoindentation in Cu64Zr36 metallic glass (MG) nanopillars with different a...
The effects of surface notches and loading mode on the mechanical deformation and mechanics of ZrNi ...