AbstractHigh Mn steels with Si and Al present great plasticity when deformed due to the TRIP/TWIP effect. This work evaluated the microstructural evolution and texture formation of a 17Mn-0.06C steel after hot rolling, cold rolling to 45% of thickness reduction and annealing at 700°C for different times. The microstructural analysis was performed by means of dilatometry, X-ray diffraction (XRD), optical (OM) and scanning electron microscopy (SEM), electron backscattering diffraction EBSD and transmission electron microscopy (TEM). It was found that during the cooling process, after the steel is annealed, the athermal ɛ and α′ martensites are formed. Tensile test results showed that the steel exhibits yield and tensile strength around 650 an...
A novel medium manganese steel with composition Fe–8.3Mn–3.8Al–1.8Si–0.5C–0.06V–0.05Sn was developed...
Due to their remarkable combination of high ultimate tensile strength and large total elongation, Hi...
The microstructure and mechanical properties of Fe-18Mn-0.6C and Fe-18Mn-0.4C steels subjected to ro...
High Mn steels with Si and Al present great plasticity when deformed due to the TRIP/TWIP effect. Th...
AbstractHigh Mn steels with Si and Al present great plasticity when deformed due to the TRIP/TWIP ef...
High Mn steels, alloyed with Si and Al, present large plasticity when deformed due to the TRIP/TWIP ...
The microstructure and texture evolution during cold rolling with total thickness reductions of 20-8...
The structure-property relationship was studied in an Fe-18Mn-0.6C-1.5Al steel subjected to cold rol...
Due to their outstanding mechanical properties high-manganese TWinning-Induced Plasticity (TWIP) ste...
The mechanical properties of medium to high-Mn austenitic TWIP/TRIP steels subjected to warm to hot ...
Effect of cold rolling on the microstructure and mechanical properties of a Fe-23Mn- 0.3C-1.5Al (in ...
Cold-rolled to 42% thickness reduction and annealed at 500, 625, and 700 C, an Fe-17Mn-3Al-2Si-1Ni-0...
The structure–property relationship was studied in an Fe-18Mn-0.6C-1.5Al steel subjected to cold rol...
Strain-induced martensite (SIM) formation was evaluated upon cold-rolling of a 17.6 wt.Mn-TRIP steel...
The microstructure and mechanical properties of cold-rolled Fe-18Mn-3Al-3Si-0.03C transformation ind...
A novel medium manganese steel with composition Fe–8.3Mn–3.8Al–1.8Si–0.5C–0.06V–0.05Sn was developed...
Due to their remarkable combination of high ultimate tensile strength and large total elongation, Hi...
The microstructure and mechanical properties of Fe-18Mn-0.6C and Fe-18Mn-0.4C steels subjected to ro...
High Mn steels with Si and Al present great plasticity when deformed due to the TRIP/TWIP effect. Th...
AbstractHigh Mn steels with Si and Al present great plasticity when deformed due to the TRIP/TWIP ef...
High Mn steels, alloyed with Si and Al, present large plasticity when deformed due to the TRIP/TWIP ...
The microstructure and texture evolution during cold rolling with total thickness reductions of 20-8...
The structure-property relationship was studied in an Fe-18Mn-0.6C-1.5Al steel subjected to cold rol...
Due to their outstanding mechanical properties high-manganese TWinning-Induced Plasticity (TWIP) ste...
The mechanical properties of medium to high-Mn austenitic TWIP/TRIP steels subjected to warm to hot ...
Effect of cold rolling on the microstructure and mechanical properties of a Fe-23Mn- 0.3C-1.5Al (in ...
Cold-rolled to 42% thickness reduction and annealed at 500, 625, and 700 C, an Fe-17Mn-3Al-2Si-1Ni-0...
The structure–property relationship was studied in an Fe-18Mn-0.6C-1.5Al steel subjected to cold rol...
Strain-induced martensite (SIM) formation was evaluated upon cold-rolling of a 17.6 wt.Mn-TRIP steel...
The microstructure and mechanical properties of cold-rolled Fe-18Mn-3Al-3Si-0.03C transformation ind...
A novel medium manganese steel with composition Fe–8.3Mn–3.8Al–1.8Si–0.5C–0.06V–0.05Sn was developed...
Due to their remarkable combination of high ultimate tensile strength and large total elongation, Hi...
The microstructure and mechanical properties of Fe-18Mn-0.6C and Fe-18Mn-0.4C steels subjected to ro...