Method for producing grain oriented electrical steel sheet

US12454745B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12454745-B2
Application numberUS-202017422390-A
CountryUS
Kind codeB2
Filing dateJan 16, 2020
Priority dateJan 16, 2019
Publication dateOct 28, 2025
Grant dateOct 28, 2025

How to read this patent

A practical reading order for non-experts. Skip the full description unless you need deep technical detail.

  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

    Who owns or filed the patent and who is credited as inventor.

  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

    Prior art links and similar publications in this corpus.

Abstract

Official abstract text for this publication.

A method for producing a grain oriented electrical steel sheet includes a decarburization annealing process where an oxidation degree PH 2 O/PH 2 is controlled, a final annealing process where hydrogen in mixed gas atmosphere is controlled to 50 volume % or more, an annealing separator removing process where water-washing is conducted using solution with inhibitor, a smoothing process where mixed gas and temperature are controlled for annealing, and an insulation coating forming process where a baking temperature and a heat treatment temperature are controlled.

First claim

Opening claim text (preview).

What is claimed is: 1. A method for producing a grain oriented electrical steel sheet, the method comprising: a hot rolling process of hot-rolling a steel piece to obtain a hot rolled steel sheet, the steel piece consisting of, as a chemical composition, by mass %, 0.030 to 0.100% of C, 0.80 to 7.00% of Si, 0.01 to 1.00% of Mn, 0 to 0.060% in total of S and Se, 0.010 to 0.065% of acid soluble Al, 0.004 to 0.012% of N, 0 to 0.30% of Cr, 0 to 0.40% of Cu, 0 to 0.50% of P, 0 to 0.30% of Sn, 0 to 0.30% of Sb, 0 to 1.00% of Ni, 0 to 0.008% of B, 0 to 0.15% of V, 0 to 0.20% of Nb, 0 to 0.10% of Mo, 0 to 0.015% of Ti, 0 to 0.010% of Bi, and a balance consisting of Fe and impurities; a cold rolling process of cold-rolling the hot rolled steel sheet to obtain a cold rolled steel sheet; a decarburization annealing process of decarburization-annealing the cold rolled steel sheet to obtain a decarburization annealed sheet; an annealing separator applying process of applying and drying an annealing separator including MgO to the decarburization annealed sheet; a final annealing process of final-annealing the decarburization annealed sheet after applying the annealing separator to obtain a final annealed sheet; an annealing separator removing process of removing a redundant annealing separator from a surface of the final annealed sheet; a smoothing process of smoothing the surface of the final annealed sheet after removing the redundant annealing separator; and an insulation coating forming process of forming an insulation coating on the surface of the final annealed sheet after being smoothed, wherein, in the decarburization annealing process, PH 2 O/PH 2 which is an oxidation degree of an atmosphere is 0.18 to 0.80, an annealing temperature is 750 to 900° C., and a holding is 10 to 600 seconds, wherein, in the final annealing process, the decarburization annealed sheet after applying the annealing separator is held at 1100 to 1200° C. for 10 hours or more in a mixed gas atmosphere including 50 volume % or more of a hydrogen, wherein, in the annealing separator removing process, the final annealed sheet is water-washed using a solution with an inhibitor which is at least one of a triethanolamine, a rosinamine, or a mercaptan in order to remove the redundant annealing separator from the surface thereof, and an amount of an iron hydroxide and an iron oxide on the surface thereof is controlled to 0.9 g/m 2 or less per a side, wherein, in the smoothing process, the final annealed sheet after removing the redundant annealing separator is annealed at 1000° C. or more in a mixed gas atmosphere including 50 volume % or more of a hydrogen or a carbon monoxide, and wherein, in the insulation coating forming process, the insulation coating is formed on the surface of the final annealed sheet after being smoothed by applying an insulation coating forming solution which includes a phosphate or a colloidal silica, by baking at 350 to 600° C., and then by heat-treating at 800 to 1000° C. in an atmosphere where an oxidation degree (PH 2 O/PH 2 ) is 0.01 to 1.5. 2. The method for producing the grain oriented electrical steel sheet according to claim 1 , the method including, between the hot rolling process and the cold rolling process, at least one of a hot band annealing process of annealing the hot rolled steel sheet or a hot band pickling process of pickling the hot rolled steel sheet. 3. The method for producing the grain oriented electrical steel sheet according to claim 1 , wherein, in the decarburization annealing process, a nitriding treatment is conducted by annealing the cold rolled steel sheet in an atmosphere including ammonia. 4. The method for producing the grain oriented electrical steel sheet according to claim 1 , the method including, between the cold rolling process and the decarburization annealing process, between the decarburization annealing process and the annealing separator applying process, between the smoothing process and the insulation coating forming process, or after the insulation coating forming process, a magnetic domain refining process of conducting a magnetic domain refining treatment. 5. The method for producing the grain oriented electrical steel sheet according to claim 1 , wherein, in the annealing separator removing process, a pickling is conducted after water-washing using an acidic solution whose volume concentration is less than 20%. 6. The method for producing the grain oriented electrical steel sheet according to claim 1 , wherein, the steel piece includes, as the chemical composition, by mass %, at least one of 0.02 to 0.30% of Cr, 0.05 to 0.40% of Cu, 0.005 to 0.50% of P, 0.02 to 0.30% of Sn, 0.01 to 0.30% of Sb, 0.01 to 1.00% of Ni, 0.0005 to 0.008% of B, 0.002 to 0.15% of V, 0.005 to 0.20% of Nb, 0.005 to 0.10% of Mo, 0.002 to 0.015% of Ti, and 0.001 to 0.010% of Bi. 7. The method for producing the grain oriented electrical steel sheet according to claim 1 , wherein, in the hot rolling process, the steel piece is heated to 1100 to 1250° C., and then, the heated steel piece is hot-rolled. 8. The method for producing the grain oriented electrical steel sheet according to claim 1 , wherein, in the decarburization annealing process, PH 2 O/PH 2 which is an oxidation degree of an atmosphere is 0.18 to 0.80, an annealing temperature is 750 to 900° C., and a holding is 10 to 600 seconds, and then a nitriding treatment is conducted by annealing the cold rolled steel sheet in a cooling stage after decarburization annealing in an atmosphere where an ammonia is included and an oxidation degree PH 2 O/PH 2 is 0.0001 to 0.01. 9. The method for producing the grain oriented electrical steel sheet according to claim 1 , wherein, in the smoothing process, the final annealed sheet after removing the redundant annealing separator and after exposing the surface thereof is annealed without applying an annealing separator at 1000° C. or more in a mixed gas atmosphere including 50 volume % or more of hydrogen or carbon monoxide. 10. A method for producing a grain oriented electrical steel sheet, the method comprising: a hot rolling process of hot-rolling a steel piece to obtain a hot rolled steel sheet, the steel piece including, as a chemical composition, by mass %, 0.030 to 0.100% of C, 0.80 to 7.00% of Si, 0.01 to 1.00% of Mn, 0 to 0.060% in total of S and Se, 0.010 to 0.065% of acid soluble Al, 0.004 to 0.012% of N, 0 to 0.30% of Cr, 0 to 0.40% of Cu, 0 to 0.50% of P, 0 to 0.30% of Sn, 0 to 0.30% of Sb, 0 to 1.00% of Ni, 0 to 0.008% of B, 0 to 0.15% of V, 0 to 0.20% of Nb, 0 to 0.10% of Mo, 0 to 0.015% of Ti, 0 to 0.010% of Bi, and a balance comprising Fe and impurities; a cold rolling process of cold-rolling the hot rolled steel sheet to obtain a cold rolled steel sheet; a decarburization annealing process of decarburization-annealing the cold rolled steel sheet to obtain a decarburization annealed sheet; an annealing separator applying process of applying and drying an annealing separator including MgO to the decarburization annealed sheet; a final annealing process of final-annealing the decarburization annealed sheet after applying the annealing separator to obtain a final annealed sheet; an annealing separator removing process of removing a redundant annealing separator from a surface of the final annealed sheet; a smoothing process of smoothing the surface of the final annealed sheet after removing the redundant annealing separator; and an insulation coating forming process of forming an insulation coating on the surface of the final annealed sheet af

Assignees

Inventors

Classifications

  • during manufacturing of plates or strips (C21D8/12 takes precedence) · CPC title

  • with titanium or zirconium · CPC title

  • with niobium or tantalum · CPC title

  • with vanadium · CPC title

  • with molybdenum or tungsten · CPC title

Patent family

Related publications grouped by family.

External sources

Frequently asked questions

Answers are generated from the same data shown on this page.

What does patent US12454745B2 cover?
A method for producing a grain oriented electrical steel sheet includes a decarburization annealing process where an oxidation degree PH 2 O/PH 2 is controlled, a final annealing process where hydrogen in mixed gas atmosphere is controlled to 50 volume % or more, an annealing separator removing process where water-washing is conducted using solution with inhibitor, a smoothing process where mi…
Who is the assignee on this patent?
Nippon Steel Corp
What technology area does this patent fall under?
Primary CPC classification C21D8/1255. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Oct 28 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 9 related publications on this page (citations in our corpus or others sharing the same primary CPC).