Conventional martensitic steels have limited ductility due to insufficient microstructural strain-hardening and damage resistance mechanisms. It was recently demonstrated that the ductility and toughness of martensitic steels can be improved without sacrificing the strength, via partial reversion of the martensite back to austenite. These improvements were attributed to the presence of the transformation-induced plasticity (TRIP) effect of the austenite phase, and the precipitation hardening (maraging) effect in the martensitic matrix. However, a full micromechanical understanding of this ductilizing effect requires a systematic investigation of the interplay between the two phases, with regards to the underlying deformation and damage micr...
Martensite that is mechanically induced from reverted austenite can be reverted again to austenite u...
MasterHigh Mn steels have been assessed in exceptional ability of high tensile stress with good duct...
DoctorWith increasing demands of advanced mechanical properties in structural materials, austenitic ...
Martensite, as one of the most well-known yet least understood microstructures occurring in modern a...
Different initial microstructures with various bimodal grain size distributions (BGSD) were produced...
Different initial microstructures with various bimodal grain size distributions (BGSD) were produced...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
This thesis studies the effect of plastic deformation on the stability of the austenitic microstruct...
This thesis studies the effect of plastic deformation on the stability of the austenitic microstruct...
The micro-scale plastic deformation behavior of an austenitic Fe-1.2%C-7.0%Mn (in wt%) steel was stu...
For the first time, deformation twinning and martensitic transformation were observed in retained au...
The micro-scale plastic deformation behavior of an austenitic Fe-1.2%C-7.0%Mn (in wt%) steel was stu...
Advanced high strength steels (AHSS) are developed to reduce vehicle weight without sacrificing pass...
The development of medium-manganese austeno-ferritic steels offers a compromise between the mechanic...
Martensite that is mechanically induced from reverted austenite can be reverted again to austenite u...
MasterHigh Mn steels have been assessed in exceptional ability of high tensile stress with good duct...
DoctorWith increasing demands of advanced mechanical properties in structural materials, austenitic ...
Martensite, as one of the most well-known yet least understood microstructures occurring in modern a...
Different initial microstructures with various bimodal grain size distributions (BGSD) were produced...
Different initial microstructures with various bimodal grain size distributions (BGSD) were produced...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
This thesis studies the effect of plastic deformation on the stability of the austenitic microstruct...
This thesis studies the effect of plastic deformation on the stability of the austenitic microstruct...
The micro-scale plastic deformation behavior of an austenitic Fe-1.2%C-7.0%Mn (in wt%) steel was stu...
For the first time, deformation twinning and martensitic transformation were observed in retained au...
The micro-scale plastic deformation behavior of an austenitic Fe-1.2%C-7.0%Mn (in wt%) steel was stu...
Advanced high strength steels (AHSS) are developed to reduce vehicle weight without sacrificing pass...
The development of medium-manganese austeno-ferritic steels offers a compromise between the mechanic...
Martensite that is mechanically induced from reverted austenite can be reverted again to austenite u...
MasterHigh Mn steels have been assessed in exceptional ability of high tensile stress with good duct...
DoctorWith increasing demands of advanced mechanical properties in structural materials, austenitic ...