Electron back-scattered diffraction in conjunction with transmission electron microscopy was employed to investigate the crystallographic nature of bainitic laths formed at relatively low transformation temperatures where a nanostructured bainite forms. It was revealed that the bainitic ferrite laths are close to the Nishiyama–Wasserman orientation relationship with the parent austenite. Furthermore, the temperature showed a significant effect on the retained austenite characteristics and the variant selection of the bainitic ferrite laths. A decrease in temperature generally refined the bainitic structure and weakened the variant selection.<br /
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
Ausforming is the process by which austenite is plastically deformed prior to bainitic or martensiti...
The in-situ neutron diffraction studies revealed that carbon partitioning occurs subsequent to the b...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 200&de...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 200&de...
The strength in nanostructured bainitic steels primarily arises from the fine platelets of bainitic ...
The bainite transformation behavior after plastic deformation of austenite, i.e., ausforming was stu...
The study investigates the microstructure and crystallographic orientation relationship in a high ca...
The isothermal transformation products of austenite over a wide range of temperatures and times in t...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 350&de...
The crystallography of bainite, transformed isothermally at 450 °C in 0.2C-2.0Mn-1.5Si-0.6Cr steel, ...
The effect of composition and processing schedule on the microstructure of C-Mn-Si-Mo-(Al)-(Nb) stee...
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
We investigated the microstructural evolution of high strength low alloy steel, Fe-2.0-Mn0.15Si-0.05...
The thermal stability of nanobainitic structures obtained by heat treating two different high-carbon...
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
Ausforming is the process by which austenite is plastically deformed prior to bainitic or martensiti...
The in-situ neutron diffraction studies revealed that carbon partitioning occurs subsequent to the b...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 200&de...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 200&de...
The strength in nanostructured bainitic steels primarily arises from the fine platelets of bainitic ...
The bainite transformation behavior after plastic deformation of austenite, i.e., ausforming was stu...
The study investigates the microstructure and crystallographic orientation relationship in a high ca...
The isothermal transformation products of austenite over a wide range of temperatures and times in t...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 350&de...
The crystallography of bainite, transformed isothermally at 450 °C in 0.2C-2.0Mn-1.5Si-0.6Cr steel, ...
The effect of composition and processing schedule on the microstructure of C-Mn-Si-Mo-(Al)-(Nb) stee...
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
We investigated the microstructural evolution of high strength low alloy steel, Fe-2.0-Mn0.15Si-0.05...
The thermal stability of nanobainitic structures obtained by heat treating two different high-carbon...
The deformation mechanisms operating in nanostructured bainite, leading to its excellent combination...
Ausforming is the process by which austenite is plastically deformed prior to bainitic or martensiti...
The in-situ neutron diffraction studies revealed that carbon partitioning occurs subsequent to the b...