The preparation process of a CuZrAl metallic glass is simulated by molecular dynamics. Different temperatures of the initial liquid state and variation of the cooling rate over five decades are considered. Elastic moduli, mass density and frequency of icosahedral clusters follow a power-law scaling with the cooling rate. The ratio of shear to bulk modulus is most sensitive to changes of the cooling rate. Assuming local fluctuations of the cooling rate occurring during the preparation process, regions characterized by comparably low values of shear modulus, mass density and frequency of icosahedral clusters can be proposed as atomistic realizations of flow defects, at which non-crystalline plastic deformation is initiated
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
Based on a systematic molecular dynamics analysis, this study reveals that plastic deformation of me...
Metallic glass shows some superior properties different from crystalline, but the nature of amorphou...
Metallic glass shows some superior properties different from crystalline, but the nature of amorphou...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Metallic glass shows some superior properties different from crystalline, but the nature of amorphou...
vii, xi, 139 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P ME 2012 LiuZAs a new cl...
We define a structural parameter, called atomic bond length deviation (BLD_i), to charac...
We define a structural parameter, called atomic bond length deviation (BLD_i), to charac...
Molecular dynamics simulations were employed to investigate the plastic deformation within the shear...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
Based on a systematic molecular dynamics analysis, this study reveals that plastic deformation of me...
Metallic glass shows some superior properties different from crystalline, but the nature of amorphou...
Metallic glass shows some superior properties different from crystalline, but the nature of amorphou...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Metallic glass shows some superior properties different from crystalline, but the nature of amorphou...
vii, xi, 139 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P ME 2012 LiuZAs a new cl...
We define a structural parameter, called atomic bond length deviation (BLD_i), to charac...
We define a structural parameter, called atomic bond length deviation (BLD_i), to charac...
Molecular dynamics simulations were employed to investigate the plastic deformation within the shear...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
Based on a systematic molecular dynamics analysis, this study reveals that plastic deformation of me...