The formation and mechanical properties of amorphous copper are studied using molecular dynamics simulation. The simulations of tension and shearing show that more pronounced plasticity is found under shearing, compared to tension. Apparent strain hardening and strain rate effect are observed. Interestingly, the variations of number density of atoms during deformation indicate free volume creation, especially under higher strain rate. In particular, it is found that shear induced dilatation does appear in the amorphous metal
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
The formation and mechanical properties of amorphous copper are studied using molecular dynamics sim...
The microscopic mechanism of the formation and mechanical behavior of amorphous Cu were studied by u...
To investigate the microscopic mechanism of elastic and plastic deformation of amorphous metals, com...
The atomistic mechanisms of plastic deformation in amorphous metals are far from being understood. W...
PACS. 34.20Cf { Interatomic potentials and forces. PACS. 62.20−x { Mechanical properties of solids. ...
Mechanical properties of copper have been studied using effective-medium theory and Molecular-Dynam...
Molecular dynamics simulations were employed to investigate the plastic deformation within the shear...
Molecular dynamics simulations using the embedded atom method (EAM) potential were carried out to st...
The material characterization of single crystalline Cu columns was numerically carried out at the su...
In this paper, large scale molecular dynamics simulations of tensile deformation of amorphous metals...
The material characterization of single crystalline Cu columns was numerically carried out at the su...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
The formation and mechanical properties of amorphous copper are studied using molecular dynamics sim...
The microscopic mechanism of the formation and mechanical behavior of amorphous Cu were studied by u...
To investigate the microscopic mechanism of elastic and plastic deformation of amorphous metals, com...
The atomistic mechanisms of plastic deformation in amorphous metals are far from being understood. W...
PACS. 34.20Cf { Interatomic potentials and forces. PACS. 62.20−x { Mechanical properties of solids. ...
Mechanical properties of copper have been studied using effective-medium theory and Molecular-Dynam...
Molecular dynamics simulations were employed to investigate the plastic deformation within the shear...
Molecular dynamics simulations using the embedded atom method (EAM) potential were carried out to st...
The material characterization of single crystalline Cu columns was numerically carried out at the su...
In this paper, large scale molecular dynamics simulations of tensile deformation of amorphous metals...
The material characterization of single crystalline Cu columns was numerically carried out at the su...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...