Shear-induced segregation, by particle size, is known in the flow of colloids and granular media, but is unexpected at the atomic level in the deformation of solid materials, especially at room temperature. In nanoscale wear tests of an Fe-based bulk metallic glass at room temperature, without significant surface heating, we find that intense shear localization under a scanned indenter tip can induce strong segregation of a dilute large-atom solute (Y) to planar regions that then crystallize as a Y-rich solid solution. There is stiffening of the material, and the underlying chemical and structural effects are characterized by transmission electron microscopy. The key influence of the soft Fe-Y interatomic interaction is investigated by ab-i...
A transmission electron microscopy investigation is conducted to trace shear bands in a Zr 53Cu 18.7...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Strain localization is an important deformation mode for many disordered materials, particularly for...
Abstract Shear-induced segregation, by particle size, is known in the flow of colloids and granular ...
At room temperature, plastic flow of metallic glasses (MGs) is sharply localized in shear bands, whi...
While the shear banding is a ubiquitous feature for metallic glasses and other disordered solids, th...
At room temperature, plastic flow of metallic glasses (MGs) is sharply localized in shear bands, whi...
To date, there has not yet been a direct observation of the initiation and propagation of individual...
Although lanthanide elements play a critical role in increasing the glass forming ability and mechan...
The tensile behavior of TiZrNiCuBe metallic glass was studied using synchrotron X-ray diffraction an...
Shear localization is an important mode of deformation in nanocrystalline metals. However, it is ver...
Mechanical behaviour study of Bulk Metallic Glasses and their nanocomposites was carried out. It tre...
Plastic deformation of metallic glasses performed at temperatures well below the glass transition pr...
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
Shear deformation can induce normal stress or hydrostatic stress in metallic glasses [ Nature Mater....
A transmission electron microscopy investigation is conducted to trace shear bands in a Zr 53Cu 18.7...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Strain localization is an important deformation mode for many disordered materials, particularly for...
Abstract Shear-induced segregation, by particle size, is known in the flow of colloids and granular ...
At room temperature, plastic flow of metallic glasses (MGs) is sharply localized in shear bands, whi...
While the shear banding is a ubiquitous feature for metallic glasses and other disordered solids, th...
At room temperature, plastic flow of metallic glasses (MGs) is sharply localized in shear bands, whi...
To date, there has not yet been a direct observation of the initiation and propagation of individual...
Although lanthanide elements play a critical role in increasing the glass forming ability and mechan...
The tensile behavior of TiZrNiCuBe metallic glass was studied using synchrotron X-ray diffraction an...
Shear localization is an important mode of deformation in nanocrystalline metals. However, it is ver...
Mechanical behaviour study of Bulk Metallic Glasses and their nanocomposites was carried out. It tre...
Plastic deformation of metallic glasses performed at temperatures well below the glass transition pr...
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
Shear deformation can induce normal stress or hydrostatic stress in metallic glasses [ Nature Mater....
A transmission electron microscopy investigation is conducted to trace shear bands in a Zr 53Cu 18.7...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Strain localization is an important deformation mode for many disordered materials, particularly for...