A novel concept of varying the strain hardening rate of a medium Mn steel with 8 wt.% Mn by varying the duration of the intercritical anneal after hot rolling was explored. It was found that the stability of the austenite phase showed an inverse square root relationship with intercritical annealing duration and that the maximum strain hardening rate showed a linear relationship with austenite stability. The change in austenite stability was attributed to continuous Mn enrichment with increasing intercritical annealing duration. Twinned martensite was also found to be the most likely product of the martensitic transformation during deformation
DoctorRecently, interest in global warming, emission gas and fine dust has been heightened, and stee...
An investigation has been made into the influence of intercritical annealing on the tensile and impa...
DoctorThe present work reports the effect of different initial microstructures on intercritical anne...
A novel medium manganese steel with composition Fe–8.3Mn–3.8Al–1.8Si–0.5C–0.06V–0.05Sn was developed...
Medium-Mn automotive sheet steels require optimized heat-treatment processes to obtain benefits caus...
Intercritical annealing (IA) heat treatments are implemented to a variety of steels with the general...
Medium manganese steels which belong to the 3rd generation advanced high strength steels are a promi...
The microstructural evolution with varying intercritical-annealing temperatures of medium-Mn (alpha ...
The present work reports the effect of different initial microstructures on reverse transformation k...
The development of superior mechanical properties in medium-Mn requires the optimization of microstr...
In this study, the austenite transformation in a cold-rolled medium-Mn steel (MMnS; 7 wt% Mn) was ad...
This paper reports the theoretical design of time-temperature matrix for intercritical annealing of ...
The microstructure and mechanical properties of intercritically annealed medium Mn steel are depende...
Intercritically annealed medium manganese steels are a promising third-generation advanced high-stre...
A medium Mn steel has been designed to achieve an excellent combination of strength and ductility b...
DoctorRecently, interest in global warming, emission gas and fine dust has been heightened, and stee...
An investigation has been made into the influence of intercritical annealing on the tensile and impa...
DoctorThe present work reports the effect of different initial microstructures on intercritical anne...
A novel medium manganese steel with composition Fe–8.3Mn–3.8Al–1.8Si–0.5C–0.06V–0.05Sn was developed...
Medium-Mn automotive sheet steels require optimized heat-treatment processes to obtain benefits caus...
Intercritical annealing (IA) heat treatments are implemented to a variety of steels with the general...
Medium manganese steels which belong to the 3rd generation advanced high strength steels are a promi...
The microstructural evolution with varying intercritical-annealing temperatures of medium-Mn (alpha ...
The present work reports the effect of different initial microstructures on reverse transformation k...
The development of superior mechanical properties in medium-Mn requires the optimization of microstr...
In this study, the austenite transformation in a cold-rolled medium-Mn steel (MMnS; 7 wt% Mn) was ad...
This paper reports the theoretical design of time-temperature matrix for intercritical annealing of ...
The microstructure and mechanical properties of intercritically annealed medium Mn steel are depende...
Intercritically annealed medium manganese steels are a promising third-generation advanced high-stre...
A medium Mn steel has been designed to achieve an excellent combination of strength and ductility b...
DoctorRecently, interest in global warming, emission gas and fine dust has been heightened, and stee...
An investigation has been made into the influence of intercritical annealing on the tensile and impa...
DoctorThe present work reports the effect of different initial microstructures on intercritical anne...