Grain-oriented electrical steel sheet and method of manufacturing grain-oriented electrical steel sheet

US2016284454A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016284454-A1
Application numberUS-201314442530-A
CountryUS
Kind codeA1
Filing dateNov 6, 2013
Priority dateNov 26, 2012
Publication dateSep 29, 2016
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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Abstract

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A method of manufacturing a grain-oriented electrical steel sheet, includes: a laser processing process of forming a laser processed portion by irradiating a region on one end side of a steel sheet in a width direction after being subjected to a cold rolling process with a laser beam along a rolling direction of the steel sheet; and a finish annealing process of coiling the steel sheet with the laser processed portion formed thereon in a coil shape and performing a finish annealing on the coil-shaped steel sheet. In the laser processing process, a melted-resolidified portion having a depth of greater than 0% and equal to or less than 80% of a sheet thickness of the steel sheet is formed by the irradiation of the laser beam at a position corresponding to the laser processed portion.

First claim

Opening claim text (preview).

1 . A grain-oriented electrical steel sheet which is manufactured by irradiating a region on one end side of a steel sheet in a width direction after being subjected to a cold rolling process with a laser beam along a rolling direction of the steel sheet and thereafter performing a finish annealing on the steel sheet which is coiled in a coil shape, wherein, regarding grains in a base iron portion of the steel sheet, which are positioned at a lower portion of a laser irradiation mark formed on a surface of the steel sheet by the irradiation of the laser beam, an angular deviation amount θa between a direction of a magnetization easy axis of each of the grains and the rolling direction is defined, and an average value R of the angular deviation amounts θa obtained by averaging the angular deviation amounts θa of the grains by the grains positioned at the lower portion of the laser irradiation mark is higher than 20° and equal to or less 40°. 2 . The grain-oriented electrical steel sheet according to claim 1 , wherein a distance WL from one end of the steel sheet in the width direction to a center of the laser irradiation mark in the width direction is 5 mm to 35 mm. 3 . The grain-oriented electrical steel sheet according to claim 1 , wherein the laser irradiation mark is formed in a region of 20% to 100% of an entire length of the steel sheet in the rolling direction from a starting point which is one end of the steel sheet in the rolling direction positioned in an outermost circumference of the steel sheet coiled in a coil shape. 4 . The grain-oriented electrical steel sheet according to claim 1 , wherein a width d of the laser irradiation mark is 0.05 mm to 5.0 mm. 5 . A method of manufacturing a grain-oriented electrical steel sheet, comprising: a laser processing process of forming a laser processed portion by irradiating a region on one end side of a steel sheet in a width direction after being subjected to a cold rolling process with a laser beam along a rolling direction of the steel sheet; and a finish annealing process of coiling the steel sheet with the laser processed portion formed thereon in a coil shape and performing a finish annealing on the coil-shaped steel sheet, wherein, in the laser processing process, a melted-resolidified portion having a depth of greater than 0% and equal to or less than 80% of a sheet thickness of the steel sheet is formed by the irradiation of the laser beam at a position corresponding to the laser processed portion. 6 . The method of manufacturing a grain-oriented electrical steel sheet according to claim 5 , wherein a distance WL from one end of the steel sheet in the width direction to a center of the laser processed portion in the width direction is 5 mm to 35 mm. 7 . The method of manufacturing a grain-oriented electrical steel sheet according to claim 5 , wherein, in the laser processing process, the laser processed portion is formed in a region of 20% to 100% of an entire length of the steel sheet in the rolling direction from a starting point which is one end of the steel sheet in the rolling direction positioned in an outermost circumference of the steel sheet coiled in a coil shape in the finish annealing process. 8 . The method of manufacturing a grain-oriented electrical steel sheet according to claim 5 , wherein a width d of the laser processed portion is 0.05 mm to 5.0 mm. 9 . The grain-oriented electrical steel sheet according to claim 2 , wherein the laser irradiation mark is formed in a region of 20% to 100% of an entire length of the steel sheet in the rolling direction from a starting point which is one end of the steel sheet in the rolling direction positioned in an outermost circumference of the steel sheet coiled in a coil shape. 10 . The grain-oriented electrical steel sheet according to claim 2 , wherein a width d of the laser irradiation mark is 0.05 mm to 5.0 mm. 11 . The grain-oriented electrical steel sheet according to claim 3 , wherein a width d of the laser irradiation mark is 0.05 mm to 5.0 mm. 12 . The grain-oriented electrical steel sheet according to claim 9 , wherein a width d of the laser irradiation mark is 0.05 mm to 5.0 mm. 13 . The method of manufacturing a grain-oriented electrical steel sheet according to claim 6 , wherein, in the laser processing process, the laser processed portion is formed in a region of 20% to 100% of an entire length of the steel sheet in the rolling direction from a starting point which is one end of the steel sheet in the rolling direction positioned in an outermost circumference of the steel sheet coiled in a coil shape in the finish annealing process. 14 . The method of manufacturing a grain-oriented electrical steel sheet according to claim 6 , wherein a width d of the laser processed portion is 0.05 mm to 5.0 mm. 15 . The method of manufacturing a grain-oriented electrical steel sheet according to claim 7 , wherein a width d of the laser processed portion is 0.05 mm to 5.0 mm. 16 . The method of manufacturing a grain-oriented electrical steel sheet according to claim 13 , wherein a width d of the laser processed portion is 0.05 mm to 5.0 mm.

Assignees

Inventors

Classifications

  • B22D11/001Primary

    of specific alloys · CPC title

  • Ferrous alloys, e.g. steel alloys (cast-iron alloys C22C37/00) · CPC title

  • containing In, Mg, or other elements not provided for in one single group C22C38/001 - C22C38/60 · CPC title

  • involving particular fabrication steps or treatments of ingots or slabs · CPC title

  • containing N · CPC title

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What does patent US2016284454A1 cover?
A method of manufacturing a grain-oriented electrical steel sheet, includes: a laser processing process of forming a laser processed portion by irradiating a region on one end side of a steel sheet in a width direction after being subjected to a cold rolling process with a laser beam along a rolling direction of the steel sheet; and a finish annealing process of coiling the steel sheet with the…
Who is the assignee on this patent?
Nippon Steel & Sumitomo Metal Corp
What technology area does this patent fall under?
Primary CPC classification B22D11/001. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Thu Sep 29 2016 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).