IP Library Granted Patent US 10,844,457
Granted Patent B2
US 10,844,457 · App. 15/570,614 · Granted Nov 24, 2020

Ferritic stainless steel foil

Inventors: Hiroto Unno (Tokyo, JP); Naoya Sawaki (Tokyo, JP); Naoki Fujimoto (Tokyo, JP); Masahiro Fukuda (Tokyo, JP); Tomohiro Uno (Tokyo, JP); Toru Inaguma (Tokyo, JP)
Assignee: NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.
C21D9/46B32B15/08B32B15/18C21D6/002C21D8/0205C21D8/0226C21D8/0263C21D8/0273C22C38/18H01M2/0287B32B2457/10C21D8/02C21D2211/005H01M2/02
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Quick Facts
Patent No.
US 10,844,457
App. No.
15/570,614
Granted
Nov 24, 2020
Kind
B2
Abstract

The present invention provides a ferritic stainless steel foil high in stretch-expand formability and further small in anisotropy of deformation with respect to stretch-expand forming even with ultrathin steel foil with a thickness of 60 μm or less. The ferritic stainless steel foil has a thickness of 5 μm to 60 μm, wherein a recrystallization rate of the stainless steel foil is 90% to 100%, and in an orientation distribution function obtained by analysis of a crystalline texture of the stainless steel foil, when a Euler angle φ2 is 45°±10°, at a plane expressed by a Euler angle Φ of 53.4°±10°, a maximum peak strength ratio in peak strength ratios shown by orientations corresponding to a Euler angle φ1 is 25 or less, where the Euler angle φ1 is 0 to 90°. The ferritic stainless steel foil may be laminated with a resin film and is useful for producing a battery case.

Claims (9)

1. A ferritic stainless steel foil having a thickness of 5 μm to 40 μm, wherein a recrystallization rate of said stainless steel foil is 90% to 100%, and

in an orientation distribution function obtained by analysis of a crystalline texture of said stainless steel foil, when a Euler angle ϕ2 is 45°±10°, at a plane expressed by a Euler angle Φ of 53.4°±10°, a maximum peak strength ratio in peak strength ratios shown by orientations corresponding to a Euler angle ϕ1 is 25 or less,

where the Euler angle ϕ1 is 0 to 90°.

2. The ferritic stainless steel foil according to claim 1 wherein a number of crystal grains in the thickness direction is three or more, wherein the number of crystal grains is obtained by dividing the thickness by average crystal grain size based on JIS G 0551.

3. The ferritic stainless steel foil according to claim 1 , wherein a surface layer of the ferric stainless steel foil has a nitrogen concentration of 1.0 mass % or less.

4. The ferritic stainless steel foil according to claim 1 , wherein a resin film is laminated on at least one surface of said ferritic stainless steel foil.

5. The ferritic stainless steel foil according to claim 2 , wherein a surface layer of the ferric stainless steel foil has a nitrogen concentration of 1.0 mass % or less.

6. The ferritic stainless steel foil according to claim 2 , wherein a resin film is laminated on at least one surface of said ferritic stainless steel foil.

7. The ferritic stainless steel foil according to claim 3 , wherein a resin film is laminated on at least one surface of said ferritic stainless steel foil.

Assignments (3)
CHANGE OF ADDRESS Recorded Feb 11, 2020
From: NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.
To: NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.
Reel/Frame 051894/0776 →
MERGER Recorded May 10, 2019
From: NIPPON STEEL & SUMIKIN MATERIALS CO., LTD.
To: NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.
Reel/Frame 049149/0423 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2017
From: UNNO, HIROTO; SAWAKI, NAOYA; FUJIMOTO, NAOKI; FUKUDA, MASAHIRO; UNO, TOMOHIRO; INAGUMA, TORU
To: NIPPON STEEL & SUMIKIN MATERIALS CO., LTD.
Reel/Frame 043988/0626 →