Both thermal and pressure treatments are effective to obtain rejuvenated metallic glass (MG) with high energy state and densely packed structure. In this study, we studied the changes of potential energy and atomic volume under various cooling rate and pressure during quenching stage for Cu-Zr MGs by atomic structure analysis. It is found that: (1) Increasing pressure leads to monotonous increasing potential energy but decreasing and then increasing atomic volume; (2) The potential energy becomes higher, and the densest atomic structure is obtained at a higher pressure with more Cu content; (3) Higher energy state obtained by increasing pressure is corresponding to more full icosahedron and 1551 bond type. This work provides a profound unde...
This paper aims to investigate the structural properties of Cu-monatomic metallic glass, and to eluc...
Bulk metallic glass of Cu38Zr54Al8 nominal composition was synthesized by copper mold casting into 6...
The atomistic mechanisms occurring during the processes of aging and rejuvenation in glassy material...
Abstract A molecular dynamics study was performed on the mechanical response of thermal-pressure rej...
The atomic structure of metallic glasses (MGs) plays an important role in their physical and mechani...
This study systematically investigates the effects of three rejuvenation modes, namely biaxial loadi...
We studied in situ the local atomic structure evolution of an equiatomic Zr50Cu50 metallic glassy al...
Cu45Zr45Al5Ag5 bulk metallic glass samples, processed by high pressure torsion (HPT) under various c...
The temperature-dependent atomic structural evolution of a Zr$_{64.13}$Cu$_{15.75}$Ni$_{10.12}$Al$_{...
The atomic structure of amorphous materials is sensitive to processing history. Here, the simultaneo...
In this thesis the investigation is being carried out on mechanical properties of Cu50-Zr50 based me...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Through high-energy x-ray diffraction and atomic pair density function analysis we find that Zr-base...
In this study, the structure changes and related mechanical properties of the Zr61Ti2Cu25Al12 metall...
The structural evolution of a Zr64.13Cu15.75Ni10.12Al10 metallic glass is investigated in-situ by hi...
This paper aims to investigate the structural properties of Cu-monatomic metallic glass, and to eluc...
Bulk metallic glass of Cu38Zr54Al8 nominal composition was synthesized by copper mold casting into 6...
The atomistic mechanisms occurring during the processes of aging and rejuvenation in glassy material...
Abstract A molecular dynamics study was performed on the mechanical response of thermal-pressure rej...
The atomic structure of metallic glasses (MGs) plays an important role in their physical and mechani...
This study systematically investigates the effects of three rejuvenation modes, namely biaxial loadi...
We studied in situ the local atomic structure evolution of an equiatomic Zr50Cu50 metallic glassy al...
Cu45Zr45Al5Ag5 bulk metallic glass samples, processed by high pressure torsion (HPT) under various c...
The temperature-dependent atomic structural evolution of a Zr$_{64.13}$Cu$_{15.75}$Ni$_{10.12}$Al$_{...
The atomic structure of amorphous materials is sensitive to processing history. Here, the simultaneo...
In this thesis the investigation is being carried out on mechanical properties of Cu50-Zr50 based me...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Through high-energy x-ray diffraction and atomic pair density function analysis we find that Zr-base...
In this study, the structure changes and related mechanical properties of the Zr61Ti2Cu25Al12 metall...
The structural evolution of a Zr64.13Cu15.75Ni10.12Al10 metallic glass is investigated in-situ by hi...
This paper aims to investigate the structural properties of Cu-monatomic metallic glass, and to eluc...
Bulk metallic glass of Cu38Zr54Al8 nominal composition was synthesized by copper mold casting into 6...
The atomistic mechanisms occurring during the processes of aging and rejuvenation in glassy material...