High manganese 3
A high strength steel comprises up to about 0.25 wt % C, up to about 2.0 wt % Si, up to about 2.0 wt % Cr, up to 14% Mn, and less than 0.5% Ni. It preferably has an M s temperature less than 50° C. The high strength steel may have a tensile strength of at least 1000 MPa and total elongations of at least about 25% after hot rolling. It may have a tensile strength of at least 1200 MPa and total elongations of at least about 20% after hot rolling.
1. A high strength steel comprising up to 0.25 wt % C, up to 2.0 wt % Si, up to 2.0 wt % Cr, greater than 10% and up to 14% Mn, less than 0.5% Ni; and no intentional addition of Cu, the balance Fe and inevitable impurities, wherein the high strength steel has a M s temperature of less than 50° C. when M s is calculated in degrees Celsius according to the following equation:
M s =607.8−363.2*[C]−26.7*[Mn]−18.1*[Cr]−38.6*[Si]−962.6*([C]−0.188) 2 .
2. The high strength steel of claim 1 , further comprising up to about 3.25 wt % Al.
3. The high strength steel of claim 2 , comprising up to about 2.0 wt % Al.
4. The high strength steel of claim 1 , comprising 1.75-3.25 wt % Al.
5. The high strength steel of claim 1 , further comprising up to about 0.5 wt % Mo.
6. The high strength steel of claim 1 , wherein the steel has a tensile strength of at least 1000 MPa and total elongations of at least about 25% after hot rolling.
7. The high strength steel of claim 1 , wherein the steel has a tensile strength of at least 1200 MPa and total elongations of at least about 20% after hot rolling.
8. The high strength steel of claim 1 , wherein the steel has a tensile strength of at least 1000 MPa and total elongations of at least about 25% after hot rolling and annealing.
9. The high strength steel of claim 1 , wherein the steel has a tensile strength of at least 1200 MPa and total elongations of at least about 20% after hot rolling and annealing.
10. The high strength steel of claim 1 , wherein the steel has a tensile strength of at least 1000 MPa and total elongations of at least about 25% after cold rolling and annealing.
11. The high strength steel of claim 1 , wherein the steel has a tensile strength of at least 1200 MPa and total elongations of at least about 20% after cold rolling and annealing.
12. A high strength steel comprising 0.05 to 0.25 wt % C, greater than 10% and up to 14 wt % Mn, 1.0 to 2.0 wt % Si, 1.75 to 3.75 wt % Al, 0.00 to 2.0 wt % Cr, 0.0 to 0.5 wt % Ni, 0.0 to 0.5 wt % Mo, no intentional addition of Cu, the balance Fe and inevitable impurities, wherein the high strength steel has a M s temperature of less than 50° C. when M s is calculated in degrees Celsius according to the following equation:
M s =607.8−363.2*[C]−26.7*[Mn]−18.1*[Cr]−38.6*[Si]−962.6*([C]−0.188) 2 .
13. The high strength steel of claim 12 , wherein the steel has a tensile strength of at least 1000 MPa and total elongations of at least about 25% after hot rolling.
14. The high strength steel of claim 12 , wherein the steel has a tensile strength of at least 1200 MPa and total elongations of at least about 20% after hot rolling.
15. The high strength steel of claim 12 , wherein the steel has a tensile strength of at least 1000 MPa and total elongations of at least about 25% after hot rolling and annealing.
16. The high strength steel of claim 12 , wherein the steel has a tensile strength of at least 1200 MPa and total elongations of at least about 20% after hot rolling and annealing.