AbstractA theoretical model that takes into account the free-volume aided cooperative shearing of shear transformation zones (STZs) is developed to quantitatively understand the ductile-to-brittle transition (DBT) of metallic glasses. The STZ dilatational strain is defined as the ratio of STZ-activated free volume to STZ volume itself. The model demonstrates that the STZ dilatational strain will increase drastically and exceed the characteristic shear strain of STZ as temperature decreases below a critical value. This critical temperature is in good agreement with the experimentally measured DBT temperature. Our results suggest that the DBT of metallic glasses is underpinned by the transition of atomic-cluster motions from STZ-type rearrang...
Compression, tension and high-velocity plate impact experiments were performed on a typical tough Zr...
Recent computational and laboratory experiments have shown that brittle-ductile transitions in the n...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
A theoretical model that takes into account the free-volume aided cooperative shearing of shear tr...
AbstractA theoretical model that takes into account the free-volume aided cooperative shearing of sh...
At temperatures well below the glass transition temperature, the failure of metallic glasses is gene...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
The ductile to brittle transition (DBT) of crystalline metals and alloys has been extensively studie...
The fracture of metallic glasses(MGs) can be induced by shear banding in a ductile mode or by cavita...
Quasi-static and dynamic tensile experiments were conducted on a Zr-based bulk metallic glass at roo...
In this paper, the spallation behavior of a binary metallic glass Cu50Zr50 is investigated with mole...
Plastic deformation in metallic glasses well below their glass transition temperatures Tg occurs spa...
Uniaxial tensile and uniaxial compressive tests for Zr-based bulk metallic glasses (BMGs) were condu...
While mechanical behavior of crystalline materials has been well-understood in terms of lattice defe...
AbstractInelastic deformation of metallic glass is through shear banding, characterized by significa...
Compression, tension and high-velocity plate impact experiments were performed on a typical tough Zr...
Recent computational and laboratory experiments have shown that brittle-ductile transitions in the n...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
A theoretical model that takes into account the free-volume aided cooperative shearing of shear tr...
AbstractA theoretical model that takes into account the free-volume aided cooperative shearing of sh...
At temperatures well below the glass transition temperature, the failure of metallic glasses is gene...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
The ductile to brittle transition (DBT) of crystalline metals and alloys has been extensively studie...
The fracture of metallic glasses(MGs) can be induced by shear banding in a ductile mode or by cavita...
Quasi-static and dynamic tensile experiments were conducted on a Zr-based bulk metallic glass at roo...
In this paper, the spallation behavior of a binary metallic glass Cu50Zr50 is investigated with mole...
Plastic deformation in metallic glasses well below their glass transition temperatures Tg occurs spa...
Uniaxial tensile and uniaxial compressive tests for Zr-based bulk metallic glasses (BMGs) were condu...
While mechanical behavior of crystalline materials has been well-understood in terms of lattice defe...
AbstractInelastic deformation of metallic glass is through shear banding, characterized by significa...
Compression, tension and high-velocity plate impact experiments were performed on a typical tough Zr...
Recent computational and laboratory experiments have shown that brittle-ductile transitions in the n...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...