The atomic structural behavior of amorphous pure Ni under hydrostatic pressures has been investigated through a molecular dynamics simulation study based on a semi-empirical interatomic potential (MEAM). It was observed that the amorphous material crystallizes under hydrostatic compressive pressur e but forms nanovoids under hydrostatic tensile pressure at room temperature. These results could be explained by the volume change effect on the nucleation energy barrier during crystallization. Consistent with this explanation, stress induced increase in the energy level (decrease of energy barrier) is proposed as the main reason for the mechanically driven nanocrystallization of amorphous materials.11sciescopuskciothe
Molecular dynamics (MD) using Quantum Sutton-Chen potentials were used to obtain an atomistic descri...
This study examined the creation mechanism of free volume during homogeneous deformation induced by ...
As a rapidly developing mass-data storage technology, phase change optical recording makes use of th...
The deformation behavior of amorphous and nanocrystalline pure Ni thin films has been investigated u...
International audienceThis study aims to investigate the role of amorphous surface layers on the mec...
A thermodynamic model is derived to study the void nucleation in ideal lattices under hydrostatic te...
Pressure-induced amorphization (PIA) is a phenomenon that involves an abrupt transition between a cr...
In this paper, large scale molecular dynamics simulations of tensile deformation of amorphous metals...
A series of large-scale molecular dynamics (MD) simulations have been performed to investigate hydro...
Molecular dynamics modeling is used to investigate the sliding feature of different nano-scale speci...
In the paper by using molecular dynamics method we investigate the sliding feature of different nano...
Some amorphous matrix composites reinforced with micron-sized crystalline phases exhibited strengthe...
Molecular dynamics simulations have been employed to gain deeper insight into the microscopic dynami...
Crystallization of amorphous silicon to diamond structure under high pressures is studied with the h...
At present, little is known concerning the details of the transition to the amorphous solid. Several...
Molecular dynamics (MD) using Quantum Sutton-Chen potentials were used to obtain an atomistic descri...
This study examined the creation mechanism of free volume during homogeneous deformation induced by ...
As a rapidly developing mass-data storage technology, phase change optical recording makes use of th...
The deformation behavior of amorphous and nanocrystalline pure Ni thin films has been investigated u...
International audienceThis study aims to investigate the role of amorphous surface layers on the mec...
A thermodynamic model is derived to study the void nucleation in ideal lattices under hydrostatic te...
Pressure-induced amorphization (PIA) is a phenomenon that involves an abrupt transition between a cr...
In this paper, large scale molecular dynamics simulations of tensile deformation of amorphous metals...
A series of large-scale molecular dynamics (MD) simulations have been performed to investigate hydro...
Molecular dynamics modeling is used to investigate the sliding feature of different nano-scale speci...
In the paper by using molecular dynamics method we investigate the sliding feature of different nano...
Some amorphous matrix composites reinforced with micron-sized crystalline phases exhibited strengthe...
Molecular dynamics simulations have been employed to gain deeper insight into the microscopic dynami...
Crystallization of amorphous silicon to diamond structure under high pressures is studied with the h...
At present, little is known concerning the details of the transition to the amorphous solid. Several...
Molecular dynamics (MD) using Quantum Sutton-Chen potentials were used to obtain an atomistic descri...
This study examined the creation mechanism of free volume during homogeneous deformation induced by ...
As a rapidly developing mass-data storage technology, phase change optical recording makes use of th...