High copper low alloy steel sheet
Abstract
A high copper low alloy steel sheet made by the steps comprising preparing a molten melt producing an as-cast low alloy steel comprising by weight, between 0.02% and 0.3% carbon, between 0.10% and 1.5% manganese, between 0.01% and 0.5% silicon, between 0.002 and 0.0095% sulfur, greater than 0.01% and less than or equal to 0.15% phosphorus, less than 0.05% aluminum, more than 0.20% copper, less than 0.03% tin, and less than 0.10% nickel, and the remainder iron and impurities resulting from melting, and solidifying the molten melt into sheet less than 10 mm in thickness in a non-oxidizing atmosphere to below 1080° C. The copper content may be between 0.2% and 2.0% by weight. The high copper low alloy steel may also have a corrosion index (I) of at least 6.0 in accordance with ASTM G101 where: I=26.01 (% Cu)+3.88 (% Ni)+1.20 (% Cr)+1.49 (% Si)+17.28 (% P)−7.29 (% Cu)(% Ni)−9.10 (% Ni)(% P)−33.39 (% Cu) 2 . The high copper low alloy steel may be produced by twin roll casting, and may have thickness less than 5 mm or less than 2 mm in thickness.
Claims
exact text as granted — not AI-modified1 . A high copper low alloy steel sheet made by the steps comprising:
(a) preparing a molten melt producing an as-cast low alloy steel comprising
(i) by weight, between 0.02% and 0.3% carbon, between 0.10% and 1.5% manganese, between 0.01% and 0.5% silicon, between 0.002 and 0.0095% sulfur, greater than 0.01% and less than or equal to 0.15% phosphorus, less than 0.05% aluminum, more than 0.20% copper, less than 0.03% tin, and less than 0.10% nickel;
(ii) the remainder iron and impurities resulting from melting;
(b) solidifying and cooling the molten melt into a sheet less than 10 mm in thickness in a non-oxidizing atmosphere to below 1080° C.
2 . The high copper low alloy steel sheet as claimed in claim 1 wherein the corrosion index (I) is at least 6.0 where:
I= 26.01 (% Cu)+3.88 (% Ni)+1.20 (% Cr)+1.49 (% Si)+17.28 (% P)−7.29 (% Cu)(% Ni)−9.10 (% Ni)(% P)−33.39 (% Cu) 2 .
3 . The high copper low alloy steel sheet as claimed in claim 1 wherein the total of the % by weight of copper is between 0.2 and 2.0.
4 . The high copper low alloy steel sheet as claimed in claim 1 wherein the thickness of the sheet is less than 5 mm in thickness.
5 . The high copper low alloy steel sheet as claimed in claim 1 wherein the thickness of the sheet is less than 2 mm in thickness.
6 . The high copper low alloy steel sheet as claimed in claim 1 wherein the % by weight of sulfur is between 0.003 and 0.009.
7 . A high copper low alloy steel sheet made by the steps comprising:
(a) preparing a molten melt producing an as-cast low alloy steel comprising
(i) by weight, between 0.02% and 0.3% carbon, between 0.10% and 1.5% manganese, between 0.01% and 0.5% silicon, between 0.002 and 0.0095% sulfur, greater than 0.01% and less than or equal to 0.15% phosphorus, less than 0.05% aluminum, more than 0.20% copper, less than 0.03% tin, and less than 0.10% nickel;
(ii) The remainder iron and impurities resulting from melting;
(b) forming the melt into a casting pool supported on casting surfaces of a pair of cooled casting rolls having a nip therebetween; (c) counter rotating the casting rolls to form a thin cast sheet of less than 10 mm in thickness extending downwardly from the nip; and (d) cooling the cast sheet to below 1080° C. in a non-oxidizing atmosphere.
8 . The high copper low alloy steel sheet as claimed in claim 7 wherein the corrosion index (I) is at least 6.0 where:
I= 26.01 (% Cu)+3.88 (% Ni)+1.20 (% Cr)+1.49 (% Si)+17.28 (% P)−7.29 (% Cu)(% Ni)−9.10 (% Ni)(% P)−33.39 (% Cu) 2 .
9 . The high copper low alloy steel sheet as claimed in claim 7 wherein the total of the percent by weight of copper is between 0.2 and 2.0.
10 . The high copper low alloy steel sheet as claimed in claim 7 wherein the thickness of the thin cast sheet is less than 5 mm in thickness.
11 . The high copper low alloy steel sheet as claimed in claim 7 wherein the thickness of the thin cast sheet is less than 2 mm in thickness.
12 . The high copper low alloy steel sheet as claimed in claim 7 wherein the % by weight of sulfur is between 0.003 and 0.009.
13 . A method of making a high copper low alloy steel sheet comprising the steps of:
(a) preparing a molten melt producing an as-cast low alloy steel comprising
(i) by weight, between 0.02% and 0.3% carbon, between 0.10% and 1.5% manganese, between 0.01% and 0.5% silicon, between 0.002 and 0.0095% sulfur, greater than 0.01% and less than or equal to 0.15% phosphorus, less than 0.05% aluminum, more than 0.20% copper, less than 0.03% tin, and less than 0.10% nickel;
(ii) the remainder iron and impurities resulting from melting;
(b) solidifying the molten melt into sheet less than 10 mm in thickness in a non-oxidizing atmosphere to below 1080° C.
14 . The method of making a high copper low alloy steel sheet as claimed in claim 13 wherein the corrosion index (I) is at least 6.0 where:
I= 26.01 (% Cu)+3.88 (% Ni)+1.20 (% Cr)+1.49 (% Si)+17.28 (% P)−7.29 (% Cu)(% Ni)−9.10 (% Ni)(% P)−33.39 (% Cu) 2 .
15 . The method of making a high copper low alloy steel sheet as claimed in claim 13 wherein the total of the percent by weight of copper is between 0.2 and 2.0.
16 . The method of making a high copper low alloy steel sheet as claimed in claim 13 wherein the thickness of the thin cast strip is less than 5 mm in thickness.
17 . The method of making a high copper low alloy steel sheet as claimed in claim 13 wherein the thickness of the thin cast strip is less than 2 mm in thickness.
18 . The method of making high copper low alloy steel sheet as claimed in claim 13 wherein the % by weight of sulfur is between 0.003 and 0.009.
19 . A method of making a high copper low alloy steel sheet comprising the steps of:
(a) preparing a molten melt producing an as-cast low alloy steel comprising
(i) by weight, between 0.02% and 0.3% carbon, between 0.10% and 1.5% manganese, between 0.01% and 0.5% silicon, between 0.002 and 0.0095% sulfur, greater than 0.01% and less than or equal to 0.15% phosphorus, less than 0.05% aluminum, more than 0.20% copper, less than 0.03% tin, and less than 0.10% nickel;
(ii) the remainder iron and impurities resulting from melting;
(b) forming the melt into a casting pool supported on casting surfaces of a pair of cooled casting rolls having a nip therebetween; (c) counter rotating the casting rolls to form a thin cast sheet of less than 10 mm in thickness extending downwardly from the nip; (d) cooling the cast sheet to below 1080° C. in a non-oxidizing atmosphere.
20 . The method of making a high copper low alloy steel sheet as claimed in claim 19 wherein the corrosion index (I) is at least 6.0 where:
I= 26.01 (% Cu)+3.88 (% Ni)+1.20 (% Cr)+1.49 (% Si)+17.28 (% P)−7.29 (% Cu)(% Ni)−9.10 (% Ni)(% P)−33.39 (% Cu) 2 .
21 . The method of making a high copper low alloy steel sheet as claimed in claim 19 wherein the total of the percent by weight of copper is between 0.2 and 2.0.
22 . The method of making a high copper low alloy steel sheet as claimed in claim 19 wherein the thickness of the thin cast strip is less than 5 mm in thickness.
23 The method of making a high copper low alloy steel sheet as claimed in claim 19 wherein the thickness of the thin cast strip is less than 2 mm in thickness.
24 . The method of making high copper low alloy steel sheet as claimed in claim 19 wherein the % by weight of sulfur is between 0.003 and 0.009.Join the waitlist — get patent alerts
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