Claims
- 1. An ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, consisting essentially of 0.01 to 0.07% C, 0.3% or less Si, 0.1% or less P, 0.01% or less S, 0.01 to 0.1% sol.Al, 0.0050% or less N, 1.6 to 2.5% of sum of at least one element selected from the group consisting of Mn, Cr, and Mo, by mass, and balance of Fe, and having an inner zone deeper than 10 μm from a surface of the steel sheet being substantially martensitic single phase structure.
- 2. An ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, consisting essentially of 0.01 to 0.07% C, 0.3% or less Si, 0.1% or less P, 0.01% or less S, 0.01 to 0.1% sol.Al, 0.0050% or less N, 0.0005 to 0.0050% B, by mass, and balance of Fe, and having an inner zone deeper than 10 μm from a surface of the steel sheet being substantially martensitic single phase structure.
- 3. An ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, consisting essentially of 0.01 to 0.07% C, 0.3% or less Si, 0.1% or less P, 0.01% or less S, 0.01 to 0.1% sol.Al, 0.0050% or less N, 1.6 to 2.5% of sum of at least one element selected from the group consisting of Mn, Cr, and Mo, 0.0005 to 0.0050% B, by mass, and balance of Fe, and having an inner zone deeper than 10 μm from a surface of the steel sheet being substantially martensitic single phase structure.
- 4. An ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, consisting essentially of 0.01 to 0.07% C, 0.3% or less Si, 0.1% or less P, 0.01% or less S, 0.01 to 0.1% sol.Al, 0.0050% or less N, 1.6 to 2.5% of sum of at least one element selected from the group consisting of Mn, Cr, Mo, 0.0005 to 0.0050% B, {(48/14)×[N]} to {3×(48/14)×[N]}% Ti, by mass, and balance of Fe, and having an inner zone deeper than 10 μm from a surface of the steel sheet being substantially martensitic single phase structure.
- 5. An ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, consisting essentially of 0.01 to 0.07% C, 0.3% or less Si, 0.1% or less P, 0.01% or less S, 0.01 to 0.1% sol.Al, 0.0050% or less N, 1.6 to 2.5% of sum of at least one element selected from the group consisting of Mn, Cr, and Mo, 0.001 to 0.04% Nb, by mass, and balance of Fe, and having an inner zone deeper than 10 μm from a surface of the steel sheet being substantially martensitic single phase structure.
- 6. An ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, consisting essentially of 0.01 to 0.07% C, 0.3% or less Si, 0.1% or less P, 0.01% or less S, 0.01 to 0.1% sol.Al, 0.0050% or less N, 1.6 to 2.5% of sum of at least one element selected from the group consisting of Mn, Cr, and Mo, 0.0005 to 0.0050% B, 0.001 to 0.04% Nb, by mass, and balance of Fe, and having an inner zone deeper than 10 μm from a surface of the steel sheet being substantially martensitic single phase structure.
- 7. An ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, consisting essentially of 0.01 to 0.07% C, 0.3% or less Si, 0.1% or less P, 0.01% or less S, 0.01 to 0.1% sol.Al, 0.0050% or less N, 1.6 to 2.5% of sum of at least one element selected from the group consisting of Mn, Cr, Mo, 0.0005 to 0.0050% B, {(48/14)×[N]} to {3×(48/14)×[N]}% Ti, 0.001 to 0.04% Nb, by mass, and balance of Fe, and having an inner zone deeper than 10 μm from a surface of the steel sheet being substantially martensitic single phase structure.
- 8. A method for manufacturing an ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, comprising the steps of:
producing a steel slab having a composition according to claim 1;hot rolling the steel slab into a steel sheet, followed by cold rolling; and heating the steel sheet by continuous annealing method to temperatures of from 800 to 890° C., applying primary cooling to the annealed steel sheet at a cooling rate of 20° C./sec or less, and applying secondary cooling to the primarily cooled steel sheet at temperatures of from 680 to 750° C. to temperatures of 50° C. or below at a cooling rate of above 500° C./sec.
- 9. A method for manufacturing an ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, comprising the steps of:
producing a steel slab having a composition according to claim 2; hot rolling the steel slab into a steel sheet, followed by cold rolling; and heating the steel sheet by continuous annealing method to temperatures of from 800 to 890° C., applying primary cooling to the annealed steel sheet at a cooling rate of 20° C./sec or less, and applying secondary cooling to the primarily cooled steel sheet at temperatures of from 680 to 750° C. to temperatures of 50° C. or below at a cooling rate of above 500° C./sec.
- 10. A method for manufacturing an ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, comprising the steps of:
producing a steel slab having a composition according to claim 3; hot rolling the steel slab into a steel sheet, followed by cold rolling; and heating the steel sheet by continuous annealing method to temperatures of from 800 to 890° C., applying primary cooling to the annealed steel sheet at a cooling rate of 20° C./sec or less, and applying secondary cooling to the primarily cooled steel sheet at temperatures of from 680 to 750° C. to temperatures of 50° C. or below at a cooling rate of above 500° C./sec.
- 11. A method for manufacturing an ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, comprising the steps of:
producing a steel slab having a composition according to claim 4; hot rolling the steel slab into a steel sheet, followed by cold rolling; and heating the steel sheet by continuous annealing method to temperatures of from 800 to 890° C., applying primary cooling to the annealed steel sheet at a cooling rate of 20° C./sec or less, and applying secondary cooling to the primarily cooled steel sheet at temperatures of from 680 to 750° C. to temperatures of 50° C. or below at a cooling rate of above 500° C./sec.
- 12. A method for manufacturing an ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, comprising the steps of:
producing a steel slab having a composition according to claim 5; hot rolling the steel slab into a steel sheet, followed by cold rolling; and heating the steel sheet by continuous annealing method to temperatures of from 800 to 890° C., applying primary cooling to the annealed steel sheet at a cooling rate of 20° C./sec or less, and applying secondary cooling to the primarily cooled steel sheet at temperatures of from 680 to 750° C. to temperatures of 50° C. or below at a cooling rate of above 500° C./sec.
- 13. A method for manufacturing an ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, comprising the steps of:
producing a steel slab having a composition according to claim 6; hot rolling the steel slab into a steel sheet, followed by cold rolling; and heating the steel sheet by continuous annealing method to temperatures of from 800 to 890° C., applying primary cooling to the annealed steel sheet at a cooling rate of 20° C./sec or less, and applying secondary cooling to the primarily cooled steel sheet at temperatures of from 680 to 750° C. to temperatures of 50° C. or below at a cooling rate of above 500° C./sec.
- 14. A method for manufacturing an ultra-high strength cold rolled steel sheet having 880 to 1170 MPa of tensile strength, comprising the steps of:
producing a steel slab having a composition according to claim 7; hot rolling the steel slab into a steel sheet, followed by cold rolling; and heating the steel sheet by continuous annealing method to temperatures of from 800 to 890° C., applying primary cooling to the annealed steel sheet at a cooling rate of 20° C./sec or less, and applying secondary cooling to the primarily cooled steel sheet at temperatures of from 680 to 750° C. to temperatures of 50° C. or below at a cooling rate of above 500° C./sec.
- 15. An automobile seat frame, using an ultra-high strength cold rolled steel sheet according to claim 1.
- 16. An automobile seat frame, using an ultra-high strength cold rolled steel sheet according to claim 2.
- 17. An automobile seat frame, using an ultra-high strength cold rolled steel sheet according to claim 3.
- 18. An automobile seat frame, using an ultra-high strength cold rolled steel sheet according to claim 4.
- 19. An automobile seat frame, using an ultra-high strength cold rolled steel sheet according to claim 5.
- 20. An automobile seat frame, using an ultra-high strength cold rolled steel sheet according to claim 6.
- 21. An automobile seat frame, using an ultra-high strength cold rolled steel sheet according to claim 7.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-276891 |
Sep 2000 |
JP |
|
Parent Case Info
[0001] This application is a continuation application of International Application PCT/JP01/07822 (not published in English) filed Sep. 10, 2001.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP01/07822 |
Sep 2001 |
US |
Child |
10108749 |
Mar 2002 |
US |