Non-oriented electrical steel sheet and production method thereof

US2019017138A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2019017138-A1
Application numberUS-201716070043-A
CountryUS
Kind codeA1
Filing dateJan 13, 2017
Priority dateJan 15, 2016
Publication dateJan 17, 2019
Grant date

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A steel containing C: not more than 0.0050%, Si: 0.1-5.0%, Mn: 0.02-3.0%, sol. Al: not more than 0.0050%, P: not more than 0.2%, S: not more than 0.0050%, N: not more than 0.0040%, T. Ca: 0.0010-0.0080%, T. O: not more than 0.0100% and having (T. Ca/T. O) of not less than 0.50 but not more than 2.0 by decarburizing to a C content of not more than 0.0050%, adding Si, decreasing Al as much as possible, and adding Ca is melted to form a slab. The slab is subjected to a hot rolling at a coiling temperature of not lower than 550° C., a cold rolling and a finish annealing, or the slab is subjected to a hot rolling, a hot band annealing at a temperature of 900-1150° C., a cold rolling and a finish annealing to thereby produce a non-oriented electrical steel sheet.

First claim

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1 .- 10 . (canceled) 11 . A non-oriented electrical steel sheet having a chemical composition comprising C: not more than 0.0050 mass %, Si: 0.1-5.0 mass %, Mn: 0.02-3.0 mass %, sol. Al: not more than 0.0050 mass %, P: not more than 0.2 mass %, S: not more than 0.0050 mass %, N: not more than 0.0040 mass % and the remainder being Fe and inevitable impurities, wherein a total Ca concentration (T. Ca) in steel is 0.0010-0.0080 mass %, a total oxygen concentration (T. O) is not more than 0.0100 mass %, and a concentration ratio (T. Ca/T. O) of a total Ca to a total oxygen is not less than 0.50, but not more than 2.0. 12 . The non-oriented electrical steel sheet according to claim 11 , wherein a concentration ratio (sol. Al/Si) of sol. Al to Si is not more than 0.0020. 13 . A non-oriented electrical steel sheet having a chemical composition comprising C: not more than 0.0050 mass %, Si: 0.1-5.0 mass %, Mn: 0.02-3.0 mass %, sol. Al: not more than 0.0050 mass %, P: not more than 0.2 mass %, S: not more than 0.0050 mass %, N: not more than 0.0040 mass % and the remainder being Fe and inevitable impurities, wherein a total Ca concentration (T. Ca) in steel is 0.0010-0.0080 mass %, a total oxygen concentration (T. O) is not more than 0.0100 mass %, and a composition ratio (CaO/SiO 2 ) of CaO to SiO 2 in oxide inclusions existing in a sheet thickness section in a rolling direction and having a size in a sheet thickness direction of not less than 0.2 μm is 0.50-4.0. 14 . The non-oriented electrical steel sheet according to claim 13 , wherein a composition ratio (Al 2 O 3 /(CaO+SiO 2 +Al 2 O 3 )) of Al 2 O 3 to (CaO+SiO 2 +Al 2 O 3 ) in the oxide inclusions existing in a sheet thickness section in a rolling direction and having a size in a sheet thickness direction of not less than 0.2 μm is not more than 0.15. 15 . The non-oriented electrical steel sheet according to claim 11 , which contains at least one group selected from Group A to Group C: Group A: one or two selected from Sn: 0.01-0.1 mass % and Sb: 0.01-0.1 mass %; Group B: one or more selected from Cu: 0.01-0.5 mass %, Ni: 0.01-0.5 mass % and Cr: 0.01-0.5 mass %; and Group C: one or two selected from REM: 0.0001-0.0050 mass % and Mg: 0.0001-0.0050 mass % in addition to the above chemical composition. 16 . The non-oriented electrical steel sheet according to claim 12 , which contains at least one group selected from Group A to Group C: Group A: one or two selected from Sn: 0.01-0.1 mass % and Sb: 0.01-0.1 mass %; Group B: one or more selected from Cu: 0.01-0.5 mass %, Ni: 0.01-0.5 mass % and Cr: 0.01-0.5 mass %; and Group C: one or two selected from REM: 0.0001-0.0050 mass % and Mg: 0.0001-0.0050 mass % in addition to the above chemical composition. 17 . The non-oriented electrical steel sheet according to claim 13 , which contains at least one group selected from Group A to Group C: Group A: one or two selected from Sn: 0.01-0.1 mass % and Sb: 0.01-0.1 mass %; Group B: one or more selected from Cu: 0.01-0.5 mass %, Ni: 0.01-0.5 mass % and Cr: 0.01-0.5 mass %; and Group C: one or two selected from REM: 0.0001-0.0050 mass % and Mg: 0.0001-0.0050 mass % in addition to the above chemical composition. 18 . The non-oriented electrical steel sheet according to claim 14 , which contains at least one group selected from Group A to Group C: Group A: one or two selected from Sn: 0.01-0.1 mass % and Sb: 0.01-0.1 mass %; Group B: one or more selected from Cu: 0.01-0.5 mass %, Ni: 0.01-0.5 mass % and Cr: 0.01-0.5 mass %; and Group C: one or two selected from REM: 0.0001-0.0050 mass % and Mg: 0.0001-0.0050 mass % in addition to the above chemical composition. 19 . A method of producing a non-oriented electrical steel sheet by hot rolling a slab having the chemical composition as claimed in claim 11 to form a hot rolled sheet, cold rolling the hot rolled sheet without hot band annealing and subjecting to a finish annealing, wherein a coiling temperature in the hot rolling is not lower than 550° C. 20 . A method of producing a non-oriented electrical steel sheet by hot rolling a slab having the chemical composition and oxide inclusions as claimed in claim 13 to form a hot rolled sheet, cold rolling the hot rolled sheet without hot band annealing and subjecting to a finish annealing, wherein a coiling temperature in the hot rolling is not lower than 550° C. 21 . A method of producing a non-oriented electrical steel sheet by hot rolling a slab having the chemical composition as claimed in claim 15 to form a hot rolled sheet, cold rolling the hot rolled sheet without hot band annealing and subjecting to a finish annealing, wherein a coiling temperature in the hot rolling is not lower than 550° C. 22 . A method of producing a non-oriented electrical steel sheet by hot rolling a slab having the chemical composition and oxide inclusions as claimed in claim 17 to form a hot rolled sheet, cold rolling the hot rolled sheet without hot band annealing and subjecting to a finish annealing, wherein a coiling temperature in the hot rolling is not lower than 550° C. 23 . A method of producing a non-oriented electrical steel sheet by hot rolling a slab having the chemical composition as claimed in claim 11 to form a hot rolled sheet and subjecting the hot rolled sheet to hot band annealing, cold rolling and finish annealing, wherein the hot band annealing is performed at a temperature of 900-1150° C. 24 . A method of producing a non-oriented electrical steel sheet by hot rolling a slab having the chemical composition and oxide inclusions as claimed in claim 13 to form a hot rolled sheet and subjecting the hot rolled sheet to hot band annealing, cold rolling and finish annealing, wherein the hot band annealing is performed at a temperature of 900-1150° C. 25 . A method of producing a non-oriented electrical steel sheet by hot rolling a slab having the chemical composition as claimed in claim 15 to form a hot rolled sheet and subjecting the hot rolled sheet to hot band annealing, cold rolling and finish annealing, wherein the hot band annealing is performed at a temperature of 900-1150° C. 26 . A method of producing a non-oriented electrical steel sheet by hot rolling a slab having the chemical composition and oxide inclusions as claimed in claim 17 to form a hot rolled sheet and subjecting the hot rolled sheet to hot band annealing, cold rolling and finish annealing, wherein the hot band annealing is performed at a temperature of 900-1150° C. 27 . A method of producing the non-oriented electrical steel sheet as claimed in claim 11 , comprising refining molten iron subjected to desulfurization and dephosphorization in a converter to provide molten steel, subjecting the molten steel to a vacuum degassing process to decarburize C to not more than 0.0050 mass % and adding with elements and/or alloy to adjust a composition, and then adding CaSi alloy to a ladle so that a total Ca concentration in steel (T. Ca) is 0.0010-0.0080 mass %, and a total oxygen concentration (T. O) is not more than 0.0100 mass %, and a concentration ratio (T. Ca/T. O) of total Ca to total oxygen is not less than 0.50 but not more than 2.0. 28 . A method of producing the non-oriented electrical steel sheet as claimed in claim 13 , comprising refining molten iron subjected to desulfurization and dephosphorization in a converter to provide molten steel, subjecting the molten steel to a vacuum degassing process to decarburize C to not more than 0.0050 mass % and adding with elements and/or alloy to adjust a composition, and th

Assignees

Inventors

Classifications

  • Very low carbon steels, i.e. having a carbon content of less than 0,01% · CPC title

  • C22C38/02Primary

    containing silicon · CPC title

  • Alloys characterised by their composition {(treatment thereof for enhancing their electromagnetic properties C21D8/12)} · CPC title

  • Decarburising · CPC title

  • C21D8/1272Primary

    Final recrystallisation annealing · CPC title

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What does patent US2019017138A1 cover?
A steel containing C: not more than 0.0050%, Si: 0.1-5.0%, Mn: 0.02-3.0%, sol. Al: not more than 0.0050%, P: not more than 0.2%, S: not more than 0.0050%, N: not more than 0.0040%, T. Ca: 0.0010-0.0080%, T. O: not more than 0.0100% and having (T. Ca/T. O) of not less than 0.50 but not more than 2.0 by decarburizing to a C content of not more than 0.0050%, adding Si, decreasing Al as much as pos…
Who is the assignee on this patent?
Jfe Steel Corp
What technology area does this patent fall under?
Primary CPC classification C22C38/02. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Thu Jan 17 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).