Method for producing a high-strength steel strip with improved properties for further processing, and a steel strip of this type
Abstract
A steel strip is produced by melting a steel melt containing (in wt. %): C: 0.1 to <0.3; Mn: 4 to <8; Al: >1 to 2.9; P: <0.05; S: <0.05; N: <0.02; remainder iron including unavoidable steel-associated elements. The steel melt is cast to form a pre-strip or to form a slab and heated to a rolling temperature of 1050 to 1250° C. or in-line rolling out of the casting heat. The pres-strip or slab is hot rolled into a hot strip having a thickness of 12 to 0.8 mm, at a final rolling temperature of 1050 to 800° C. The hot strip is reeled at a temperature of more than 200 to 800° C., pickled, annealed for an annealing time of 1 min to 48 h and at a temperature of 540 to 840° C., and cold rolled at room temperature or elevated temperature in at least one rolling pass.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A method for producing an ultra high strength steel strip having a TRIP/TWIP effect, comprising:
melting a steel melt containing (in wt. %): C: 0.1 to <0.3; Mn: 4 to <8; Al: >1 to 2.9; P: <0.05; S: <0.05; N: <0.02; with the remainder being iron including unavoidable steel-associated elements, in a blast furnace process or electric arc furnace process; casting the steel melt to form a pre-strip by a horizontal or vertical strip casting process approximating a final dimension or casting the steel melt to form a slab or thin slab by a horizontal or vertical slab or thin slab casting process; heating to a rolling temperature of 1050 to 1250° C. or in-line rolling out of the casting heat; hot rolling the pre-strip or the slab or the thin slab to form a hot strip having a thickness of 12 to 0.8 mm, at a final rolling temperature of 1050 to 800° C.; reeling the hot strip at a temperature of more than 200 to 800° C.; pickling the hot strip; annealing the hot strip in a continuous or discontinuous annealing installation for an annealing time of 1 min to 48 h and at a temperature of 540 to 840° C.; and cold rolling the hot strip at room temperature or elevated temperature in one or a plurality of rolling passes.
2 . The method of claim 1 , further comprising adding to the steel melt by alloying at least one element in wt. % selected from the group consisting of Si: 0.05 to 0.7; Cr: 0.1 to 3; Mo: 0.01 to 0.9; Ti: 0.005 to 0.3; B: 0.0005 to 0.01.
3 . The method of claim 1 , further comprising subjecting the steel melt in blast furnace process or electric arc furnace process to a vacuum treatment.
4 . The method of claim 1 , further comprising electrolytically galvanising or hot-dip galvanising the steel strip or applying another organic or inorganic coating.
5 . The method of claim 1 , wherein the hot strip is cold rolled at a temperature of 60 to 450° C.
6 . The method of claim 1 , wherein during cold rolling in a plurality of rolling passes the hot strip is selectively intermediately heated or cooled to a temperature of 60 to 450° C. between the rolling passes.
7 . The method of claim 1 , further comprising, after cold rolling at room temperature or elevated temperature, annealing the steel strip in a continuous annealing installation for an annealing time of 1 to 15 min and at a temperature of 720° C. to 840° C., or by a discontinuous annealing installation for an annealing time of 30 min to 48 h and at a temperature of 550° C. to 820° C.
8 . The method of claim 1 , further comprising, after undergoing annealing, cooling the steel strip to a temperature of below 250° C. to room temperature, subsequently reheating the steel strip to a temperature of 300 to 450° C., maintaining the steel strip at the temperature of 300 to 450° C. for up to 5 min, and subsequently cooling the steel strip to room temperature.
9 . The method of claim 1 , further comprising temper-rolling the steel strip after cold rolling.
10 . The method of claim 4 , further comprising applying a further coating on an organic or inorganic basis upon the steel strip after electrolytic galvanising or hot-dip galvanising.
11 . The method of claim 1 , further comprising cold forming or warm forming the steel strip into a structural component.
12 . The method of claim 11 , wherein warm forming of the steel strip is executed at a temperature of 60 to 450° C.Join the waitlist — get patent alerts
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