The plasticity of metallic glasses depends largely on the atomic-scale structure. However, the details of the atomic-scale structure, which are responsible for their properties, remain to be clarified. In this study, in-situ high-energy synchrotron X-ray diffraction and strain-rate jump compression tests at different cryogenic temperatures were carried out. We show that the activation volume of flow units linearly depends on temperature in the non-serrated flow regime. A plausible atomic deformation mechanism is proposed, considering that the activated flow units mediating the plastic flow originate from the medium-range order and transit to the short-range order with decreasing temperature
Based on a systematic molecular dynamics analysis, this study reveals that plastic deformation of me...
Flow induced structural evolution in a supercooled metallic liquid Vit106a (Zr58.5Cu15.6Al10.3 Ni12....
While glasses are ubiquitous in natural and manufactured materials, the atomic-level mechanisms gove...
The plasticity of metallic glasses depends largely on the atomic-scale structure. However, the detai...
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
The structural origins for the high plasticity of a Zr Cu Ni Al (at.%) bulk metallic glass are explo...
International audienceDespite their antinomic atomic structures, long range ordered but non-periodic...
Molecular dynamics simulations were employed to investigate the plastic deformation within the shear...
A model Zr41.25Ti13.75Ni10Cu12.5Be22.5 (at.%) bulk metallic glass (BMG) is selected to explore the s...
The temperature-dependent atomic structural evolution of a Zr$_{64.13}$Cu$_{15.75}$Ni$_{10.12}$Al$_{...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
While the shear banding is a ubiquitous feature for metallic glasses and other disordered solids, th...
The nanoindentation technique was employed to examine the strain rate sensitivity, m, and its depend...
By reducing the testing temperatures down to the temperature well below the glassy transition temper...
Based on a systematic molecular dynamics analysis, this study reveals that plastic deformation of me...
Flow induced structural evolution in a supercooled metallic liquid Vit106a (Zr58.5Cu15.6Al10.3 Ni12....
While glasses are ubiquitous in natural and manufactured materials, the atomic-level mechanisms gove...
The plasticity of metallic glasses depends largely on the atomic-scale structure. However, the detai...
The design of ductile heterogeneous metallic glasses (MGs) with enhanced deformability by purposely ...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
The structural origins for the high plasticity of a Zr Cu Ni Al (at.%) bulk metallic glass are explo...
International audienceDespite their antinomic atomic structures, long range ordered but non-periodic...
Molecular dynamics simulations were employed to investigate the plastic deformation within the shear...
A model Zr41.25Ti13.75Ni10Cu12.5Be22.5 (at.%) bulk metallic glass (BMG) is selected to explore the s...
The temperature-dependent atomic structural evolution of a Zr$_{64.13}$Cu$_{15.75}$Ni$_{10.12}$Al$_{...
The influence of thermal processing on the potential energy, atomic structure, and mechanical proper...
While the shear banding is a ubiquitous feature for metallic glasses and other disordered solids, th...
The nanoindentation technique was employed to examine the strain rate sensitivity, m, and its depend...
By reducing the testing temperatures down to the temperature well below the glassy transition temper...
Based on a systematic molecular dynamics analysis, this study reveals that plastic deformation of me...
Flow induced structural evolution in a supercooled metallic liquid Vit106a (Zr58.5Cu15.6Al10.3 Ni12....
While glasses are ubiquitous in natural and manufactured materials, the atomic-level mechanisms gove...