IP Library Granted Patent US 10,544,490
Granted Patent B2
US 10,544,490 · App. 15/329,518 · Granted Jan 28, 2020

Ferritic stainless steel for fuel cell and method for producing the same

Inventors: Masaharu Hatano (Hikari, JP); Atsutaka Hayashi (Hikari, JP); Kazuhisa Matsumoto (Hikari, JP)
Assignee: NIPPON STEEL & SUMIKIN STAINLESS STEEL CORPORATION
C22C38/38C21D1/76C21D6/00C21D6/002C21D9/46C22C38/00C22C38/001C22C38/002C22C38/005C22C38/02C22C38/04C22C38/06C22C38/12C22C38/14C22C38/18C22C38/20C22C38/22C22C38/24C22C38/28C22C38/60H01M8/06H01M8/12
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,544,490
App. No.
15/329,518
Granted
Jan 28, 2020
Kind
B2
Abstract

A ferritic stainless steel for a fuel cell includes, in mass %, Cr: 11 to 25%, C: 0.03% or less, Si: 2% or less, Mn: 2% or less, Al: 0.5 to 4.0%, P: 0.05% or less, S: 0.01% or less, N: 0.03% or less, Ti: 1% or less, and a balance composed of Fe and unavoidable impurities. Furthermore, in the ferritic stainless steel, the maximal concentration of Al in a surface of the ferritic stainless steel is 30 mass % or more in cation ion fraction excepting O in an depth direction region having twice a thickness of an oxide film having less than 0.1 μm.

Claims (16)

1. A ferritic stainless steel for a fuel cell comprising, in mass %, Cr: 11 to 25%, C: 0.03% or less, Si: 2% or less, Mn: 2% or less, Al: 0.5 to 4.0%, P: 0.05% or less, S: 0.01% or less, N: 0.03% or less, Ti: 1% or less, and a balance composed of Fe and unavoidable impurities, wherein,

a maximal concentration of Al in a surface of the ferritic stainless steel is 30 mass % or more in cation ion fraction excepting O in an depth direction region having twice a thickness of an oxide film having less than 0.1 μm, and

a maximal concentration of Ti in a surface of the ferritic stainless steel is 3 mass % or more and 60 mass % or less in cation ion fraction excepting O.

2. The ferritic stainless steel for a fuel cell according to claim 1 , further comprising, in mass %, one or two or more of elements selected from a group consisting of Ni: 1% or less, Cu: 1% or less, Mo: 2% or less, Sn: 1% or less, Sb: 1% or less, W: 1% or less, Co: 0.5% or less, Nb: 0.5% or less, V: 0.5% or less, Zr: 0.5% or less, Ga: 0.1% or less, Mg: 0.01% or less, B: 0.005% or less, Ca: 0.005% or less, Y: 0.1% or less, Hf: 0.1% or less, and REM: 0.1% or less, wherein the REM is an element in atomic numbers 57 to 71.

3. A method for producing the ferritic stainless steel for a fuel cell according to claim 2 , the method comprising:

a heating step of heating the ferritic stainless steel having a composition of the ferritic stainless steel, in an atmosphere containing oxygen or hydrogen at a temperature of 700 to 1100° C., to form an oxide film on a surface of the ferritic stainless steel.

4. A method for producing the ferritic stainless steel for a fuel cell according to claim 1 , the method comprising:

a heating step of heating the ferritic stainless steel having a composition of the ferritic stainless steel, in an atmosphere containing oxygen or hydrogen at a temperature of 700 to 1100° C., to form an oxide film on a surface of the ferritic stainless steel.

5. A ferritic stainless steel for a fuel cell comprising, in mass %, Cr: 11 to 25%, C: 0.03% or less, Si: 2% or less, Mn: 2% or less, Al: 0.5 to 4.0%, P: 0.05% or less, S: 0.01% or less, N: 0.03% or less, Ti: 1% or less, and a balance composed of Fe and unavoidable impurities, wherein,

a maximal concentration of Al in a surface of the ferritic stainless steel is 30 mass % or more in cation ion fraction excepting O in an depth direction region having twice a thickness of an oxide film having less than 0.1 μm, after heating the ferritic stainless steel in an atmosphere containing 50 vol % or more of hydrogen gas and a balance substantively composed of nitrogen gas at a temperature of 800 to 1000° C. within 10 minutes or less and cooling thereof to room temperature, and

a maximal concentration of Ti in a surface of the ferritic stainless steel is 3 mass % or more and 60 mass % or less in cation ion fraction excepting O.

6. The ferritic stainless steel for a fuel cell according to claim 5 , further comprising, in mass %, one or two or more of elements selected from a group consisting of Ni: 1% or less, Cu: 1% or less, Mo: 2% or less, Sn: 1% or less, Sb: 1% or less, W: 1% or less, Co: 0.5% or less, Nb: 0.5% or less, V: 0.5% or less, Zr: 0.5% or less, Ga: 0.1% or less, Mg: 0.01% or less, B: 0.005% or less, Ca: 0.005% or less, Y: 0.1% or less, Hf: 0.1% or less, and REM: 0.1% or less, wherein the REM is an element in atomic numbers 57 to 71.

7. A ferritic stainless steel for a fuel cell comprising, in mass %, Cr: 11 to 25%, C: 0.03% or less, Si: 2% or less, Mn: 2% or less, Al: 0.5 to 4.0%, P: 0.05% or less, S: 0.01% or less, N: 0.03% or less, Ti: 1% or less, and a balance composed of Fe and unavoidable impurities, wherein,

a maximal concentration of Al in a surface of the ferritic stainless steel is 30 mass % or more in cation ion fraction excepting O in an depth direction region having twice a thickness of an oxide film having less than 0.1 μm, after heating the ferritic stainless steel in an atmosphere of air at a temperature of 850° C. for 100 hours and cooling thereof to room temperature, and

a maximal concentration of Ti in a surface of the ferritic stainless steel is 3 mass % or more and 60 mass % or less in cation ion fraction excepting O.

8. The ferritic stainless steel for a fuel cell according to claim 7 , further comprising, in mass %, one or two or more of elements selected from a group consisting of Ni: 1% or less, Cu: 1% or less, Mo: 2% or less, Sn: 1% or less, Sb: 1% or less, W: 1% or less, Co: 0.5% or less, Nb: 0.5% or less, V: 0.5% or less, Zr: 0.5% or less, Ga: 0.1% or less, Mg: 0.01% or less, B: 0.005% or less, Ca: 0.005% or less, Y: 0.1% or less, Hf: 0.1% or less, and REM: 0.1% or less, wherein the REM is an element in atomic numbers 57 to 71.

Assignments (2)
CHANGE OF NAME Recorded Jul 8, 2021
From: NIPPON STEEL & SUMIKIN STAINLESS STEEL CORPORATION
To: NIPPON STEEL STAINLESS STEEL CORPORATION
Reel/Frame 056805/0030 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2017
From: HATANO, MASAHARU; HAYASHI, ATSUTAKA; MATSUMOTO, KAZUHISA
To: NIPPON STEEL & SUMIKIN STAINLESS STEEL CORPORATION
Reel/Frame 041110/0049 →
Priority Claims (2)
JP 2014-154022 · Jul 29, 2014 · national
JP 2014-154023 · Jul 29, 2014 · national
Continuity (1)
Related Publication 20170321310A1 · Nov 9, 2017
Cited By (2)
US 12,454,746 US 12,603,301