Ultra-fine carbide-free bainitic (UCFB) steel, also known as nano-bainite (NB) steel, is composed of bainitic ferrite laths with nanoscale thickness and carbon-rich film-like retained austenite located between laths. The bainite transformation kinetic model can accurately describe the bainite transformation kinetics in conventional austempering (CA) processes based on the shear mechanism combined with the dilatometer test. UCFB steels with medium and high carbon composition are designed in this work to systematically study the transformation kinetics of bainite, and the evolution of its microstructure and properties, and reveal the influence of heat treatment processes on the microstructure and properties the UCFB steels. The results show t...
The influence of tempering at 400 and 500 °C on two bainitic ferrite microstructures obtained via pu...
This research investigates the process of the formation of bainite in austempered 5160 steel. Steel ...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 200&de...
This study investigates the bainitic transformation kinetics of carbide-free bainitic steel with Si ...
Bainite formation in steels begins with nucleation of bainitic ferrite at austenite grain boundaries...
Nano-bainitic steels represent a new class of alloys, whose microstructure consists of nanostructure...
Bainite is an interesting solid-state transformation in steels and a detailed understanding of the m...
Tesis DoctoralHigh-strength steels, characterized by an excellent combination of mechanical properti...
Abstract This work deals with the kinetic aspects of bainite formation during isothermal holding ab...
AbstractBainite formation in steels begins with nucleation of bainitic ferrite at austenite grain bo...
The major strengthening mechanisms in bainitic steels arise from the bainitic ferrite plate thicknes...
Abstract The major strengthening mechanisms in bainitic steels arise from the bainitic ferrite plate...
Bainitic steels have a right combination of strength and toughness when compared to that of martensi...
4140 steel and 4150 steel are different only in their carbon content. A comparison between the kinet...
Abstract A combination of physical simulation and laboratory rolling experiments, including thermom...
The influence of tempering at 400 and 500 °C on two bainitic ferrite microstructures obtained via pu...
This research investigates the process of the formation of bainite in austempered 5160 steel. Steel ...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 200&de...
This study investigates the bainitic transformation kinetics of carbide-free bainitic steel with Si ...
Bainite formation in steels begins with nucleation of bainitic ferrite at austenite grain boundaries...
Nano-bainitic steels represent a new class of alloys, whose microstructure consists of nanostructure...
Bainite is an interesting solid-state transformation in steels and a detailed understanding of the m...
Tesis DoctoralHigh-strength steels, characterized by an excellent combination of mechanical properti...
Abstract This work deals with the kinetic aspects of bainite formation during isothermal holding ab...
AbstractBainite formation in steels begins with nucleation of bainitic ferrite at austenite grain bo...
The major strengthening mechanisms in bainitic steels arise from the bainitic ferrite plate thicknes...
Abstract The major strengthening mechanisms in bainitic steels arise from the bainitic ferrite plate...
Bainitic steels have a right combination of strength and toughness when compared to that of martensi...
4140 steel and 4150 steel are different only in their carbon content. A comparison between the kinet...
Abstract A combination of physical simulation and laboratory rolling experiments, including thermom...
The influence of tempering at 400 and 500 °C on two bainitic ferrite microstructures obtained via pu...
This research investigates the process of the formation of bainite in austempered 5160 steel. Steel ...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 200&de...