IP Library › Granted Patent US 12,590,347
Granted Patent B2
US 12,590,347 · App. 17/575,300 · Granted Mar 31, 2026

Process for manufacturing cold-rolled and annealed steel sheet with a very high strength, and sheet thus produced

Inventors: Javier Gil Otin (Madrid, ES); Antoine Moulin (Woippy, FR)
Assignee: ArcelorMittal
C21D9/46B22D11/001C21D8/02C21D8/0205C21D8/0226C21D8/0236C21D9/52C22C38/001C22C38/002C22C38/02C22C38/04C22C38/06C22C38/12C22C38/14C22C38/22C22C38/28C22C38/32C22C38/38C23G1/00C23G1/08
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Quick Facts
Patent No.
US 12,590,347
App. No.
17/575,300
Granted
Mar 31, 2026
Kind
B2
Abstract

The present invention provides a cold-rolled and annealed steel sheet with a strength greater than 1200 MPa, the composition of which includes, the contents being expressed by weight: 0.10%≤C≤0.255, 1%≤Mn≤3%, A≥0.010%, Si≤2.990%, S≤0.015%, P≤0.1% s, N≤0.008%, it being understood that 1%≤Si+Al≤3%, it being understood that Cr+3Mo≥0.3%, Ti in an amount such that Ti/N≥4 and Ti≤0.040%. A balance of the composition includes iron and inevitable impurities resulting from the smelting. The microstructure of the steel includes 15 to 90% bainite, the remainder includes martensite and residual austenite.

Claims (93)

1 . A cold-rolled steel sheet with a strength greater than 1200 MPa with an elongation at break greater than 8%, a composition of steel, by weight, comprising:

0.10%≤C≤0.25%

1%≤Mn≤3%

Al≥0.010%

1.2%≤Si≤1.8%

S≤0.015%

P≤0.1%

N≤0.008%,

it being understood that

1.2%≤Si+Al≤3%,

Mo≤0.25%

Cr≤1.65%,

it being understood that

Cr+3Mo≥0.3%, and

B=0%

the composition optionally comprising:

0.05%≤V≤0.15%

Ti in an amount so that Ti/N≥4 and Ti≤0.040%,

a balance of the composition consisting of iron and inevitable impurities resulting from processing,

a microstructure of the steel comprising 65 to 90% bainite, the remainder consisting of islands of martensite and residual austenite.

2 . The steel sheet as recited in claim 1 wherein the composition of the steel includes by weight:

0.19%≤C≤0.23%.

3 . The steel sheet as recited in claim 1 wherein the composition of the steel includes by weight:

1.5%≤Mn≤2.5%.

4 . The steel sheet as recited in claim 1 wherein the composition of the steel includes by weight:

1.2% Al≤1.8%.

5 . The steel sheet as recited in claim 1 wherein the composition of the steel includes by weight:

0.05%≤V≤0.15%

0.004≤N≤0.008%.

6 . The steel sheet as recited in claim 1 wherein the composition of the steel includes, by weight: 0.12%≤V≤0.15%.

7 . The steel sheet as recited in claim 1 wherein the average size of the islands of martensite and residual austenite is less than 1 micron, and the average distance between the islands is less than 6 microns.

8 . A cold-rolled steel sheet with a strength greater than 1400 MPa with an elongation at break greater than 8%, with a composition of steel, by weight, comprising:

0.10%≤C≤0.25%

1%≤Mn≤3%

Al≥0.010%

1.2%≤Si≤1.8%

S≤0.015%

P≤0.1%

N≤0.008%,

it being understood that

1.2%≤Si+Al≤3%,

Mo≤0.25%, and

Cr≤1.65%,

it being understood that

Cr+3Mo≥0.3%,

the composition optionally comprising:

0.05%≤V≤0.15%

B≤0.005%

Ti in an amount so that Ti/N≥4 and Ti≤0.040%,

a balance of the composition consisting of iron and inevitable impurities resulting from processing,

a microstructure of the steel comprising 45 to 65% bainite, the remainder consisting of islands of martensite and residual austenite.

9 . The steel sheet as recited in claim 8 wherein the composition of the steel includes by weight:

0.19%≤C≤0.23%.

10 . The steel sheet as recited in claim 8 wherein the composition of the steel includes by weight:

1.5%≤Mn≤2.5%.

11 . The steel sheet as recited in claim 8 wherein the composition of the steel includes by weight:

1.2% Al≤1.8%.

12 . The steel sheet as recited in claim 8 wherein the composition of the steel includes by weight:

0.05%≤V≤0.15%

0.004≤N≤0.008%.

13 . The steel sheet as recited in claim 8 wherein the composition of the steel includes by weight: 0.12%≤V≤0, 15%.

14 . The steel sheet as recited in claim 8 wherein the average size of the islands of martensite and residual austenite is less than 1 micron, and the average distance between the islands is less than 6 microns.

15 . A cold-rolled steel sheet with a strength greater than 1600 MPa with an elongation at break greater than 8%, with a composition of steel, by weight, comprising:

0.10%≤C≤0.25%

1%≤Mn≤3%

Al≥0.010%

1.2%≤Si≤1.8%

S≤0.015%

P≤0.1%

N≤0.008%,

it being understood that

1.2%≤Si+Al≤3%,

Mo≤0.25%

Cr≤1.65%,

it being understood that

Cr+3Mo≥0.3%, and

0.0005≤B≤0.005%

the composition optionally comprising:

0.05%≤V≤0.15% and

Ti in an amount so that Ti/N≥4 and Ti≤0.040%,

a balance of the composition consisting of iron and inevitable impurities resulting from processing,

a microstructure of the steel comprising 15 to 45% bainite, the remainder consisting of martensite and residual austenite.

16 . The steel sheet as recited in claim 15 wherein the composition of the steel includes by weight:

0.19%≤C≤0.23%.

17 . The steel sheet as recited in claim 15 wherein the composition of the steel includes by weight:

1.5%≤Mn≤2.5%.

18 . The steel sheet as recited in claim 15 wherein the composition of the steel includes by weight:

1.2% Al≤1.8%.

19 . The steel sheet as recited in claim 15 wherein the composition of the steel includes by weight:

0.05%≤V≤0.15%

0.004≤N≤0.008%.

20 . The steel sheet as recited in claim 15 wherein the composition of the steel includes by weight: 0.12%≤V≤0.15%.

21 . The steel sheet as recited in claim 15 wherein the martensite and residual austenite are in the form of islands and the average size of the islands of martensite and residual austenite is less than 1 micron, and the average distance between the islands is less than 6 microns.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2022
From: MOULIN, ANTOINE; GIL OTIN, JAVIER
To: ARCELORMITTAL
Reel/Frame 058650/0881 →
Priority Claims (1)
EP 07290598 · May 11, 2007 · regional
Continuity (4)
Continuation 16592341 · Oct 3, 2019
Division 15243610 · Aug 22, 2016
Continuation 12599166
Related Publication 20220136078A1 · May 5, 2022
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