Copyright © 2021 The Author(s). The microstructure characteristics in early stage shear localization of near-α Ti−6Al−2Zr−1Mo−1V titanium alloy were investigated by split Hopkinson pressure bar (SHPB) tests using hat-shaped specimens. The microstructural evolution and deformation mechanisms of hat-shaped specimens were revealed by electron backscattered diffraction (EBSD) method. It is found that the nucleation and expansion of adiabatic shear band (ASB) are affected by both geometric and structural factors. The increase of dislocation density, structure fragment and temperature rise in the deformation-affected regions provide basic microstructural conditions. In addition to the dislocation slips, the extension twins detected in shear regio...
Deformation at high strain rates in combination with local thermal softening can lead to the formati...
In this work, the impact of the microstructure and the loading conditions on the mechanical behavior...
Dynamic deformation occurs when bodies are subjected to rapidly changing loads and can differ signif...
The microstructure characteristics in early stage shear localization of near-α Ti−6Al−2Zr−1Mo−1V tit...
Titanium Ti6Al4V alloy is a superior material that has extremely high strength, hardness and good an...
AbstractThe alloy Ti6Al4V is known to be prone to the formation of adiabatic shear bands when dynami...
Shear stresses are a common reason for failure in many industrial applications. Localized shear defo...
For metallic materials, fabrication processes (e.g. machining and forging) may involve important str...
Adiabatic shear localization has been studied by many researchers, both from mechanical and material...
The evolution of the microstructure generated by high strain-rate plastic deformation of titanium wa...
The stress-strain behaviour and microstructural evolution of the Ti-6Cr-5Mo-5V-4Al (Ti6554) alloy wa...
The formation and evolution of adiabatic shear behaviors, as well as the corresponding mechanical pr...
Metals and alloys deformed at high strain rates, which are occurring during impact or metal forming ...
The microstructural evolution and grain refinement within adiabatic shear bands in the Ti6554 alloy ...
The evolution of the microstructure g nerated by high strain-rate plastic deformation of titanium wa...
Deformation at high strain rates in combination with local thermal softening can lead to the formati...
In this work, the impact of the microstructure and the loading conditions on the mechanical behavior...
Dynamic deformation occurs when bodies are subjected to rapidly changing loads and can differ signif...
The microstructure characteristics in early stage shear localization of near-α Ti−6Al−2Zr−1Mo−1V tit...
Titanium Ti6Al4V alloy is a superior material that has extremely high strength, hardness and good an...
AbstractThe alloy Ti6Al4V is known to be prone to the formation of adiabatic shear bands when dynami...
Shear stresses are a common reason for failure in many industrial applications. Localized shear defo...
For metallic materials, fabrication processes (e.g. machining and forging) may involve important str...
Adiabatic shear localization has been studied by many researchers, both from mechanical and material...
The evolution of the microstructure generated by high strain-rate plastic deformation of titanium wa...
The stress-strain behaviour and microstructural evolution of the Ti-6Cr-5Mo-5V-4Al (Ti6554) alloy wa...
The formation and evolution of adiabatic shear behaviors, as well as the corresponding mechanical pr...
Metals and alloys deformed at high strain rates, which are occurring during impact or metal forming ...
The microstructural evolution and grain refinement within adiabatic shear bands in the Ti6554 alloy ...
The evolution of the microstructure g nerated by high strain-rate plastic deformation of titanium wa...
Deformation at high strain rates in combination with local thermal softening can lead to the formati...
In this work, the impact of the microstructure and the loading conditions on the mechanical behavior...
Dynamic deformation occurs when bodies are subjected to rapidly changing loads and can differ signif...