IP Library Granted Patent US 10,196,721
Granted Patent B2
US 10,196,721 · App. 14/127,990 · Granted Feb 5, 2019

Heat-resistant iron-chromium-aluminum alloy with low chromium vaporization rate and elevated thermal stability

Inventors: Heike Hattendorf (Werdohl, DE); Bernd Kuhn (Alsdorf, DE); Thomas Eckardt (Cologne, DE); Tilmann Beck (Juelich, DE); Willem Quadakkers (EG Wijnandsrade, NL); Werner Theisen (Hattingen, DE); Nilofar Nabiran (Bochum, DE)
Assignee: VDM Metals International GmbH
C22C38/52C22C38/001C22C38/002C22C38/004C22C38/005C22C38/02C22C38/04C22C38/06C22C38/22C22C38/26C22C38/42C22C38/44C22C38/48C22C38/50H01M8/021C21D2211/004C21D2211/005Y02P70/56
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Quick Facts
Patent No.
US 10,196,721
App. No.
14/127,990
Granted
Feb 5, 2019
Kind
B2
Abstract

An iron-chromium-aluminum alloy with improved heat resistance, low chromium vaporization rate and good processability, comprising (in % by mass), 2.0 to 4.5% Al, 12 to 25% Cr, 1.0 to 4% W, 0.25 to 2.0% Nb, 0.05 to 1.2% Si, 0.001 to 0.70% Mn, 0.001 to 0.030% C, 0.0001 to 0.05% Mg, 0.0001 to 0.03% Ca, 0.001 to 0.030% P, max. 0.03% N, max. 0.01% S, remainder iron and the usual melting-related impurities.

Claims (22)

1. A solid oxide fuel cell comprising

an interconnector plate, the interconnector plate comprising a nonconductive part,

the nonconductive part comprising a part of said interconnector plate of said solid oxide fuel cell and being an iron-chromium-aluminum alloy,

with (in mass %) 3.0 to 4.5% Al, 16 to 23% Cr, 1.0 to 4% W, 0.25 to 2.0% Nb, 0.05 to 1.2% Si, 0.001 to 0.70% Mn, 0.001 to 0.030% C, 0.0001 to 0.05% Mg, 0.0001 to 0.03% Ca, 0.001 to 0.030% P, max. 0.03% N, max. 0.01% S, additionally containing 0.01 to 0.10% yttrium, 0.01 to 0.10% hafnium; 0.01 to 0.10% zirconium, wherein W can be replaced by 1 to 4% Mo, wherein Y can be replaced completely or partly by 0.01 to 0.10% of at least one of the elements Sc and/or La and/or cerium and wherein Hf or Zr can be replaced completely or partly by 0.01 to 0.1% of the element Ti, optionally further containing at most 1.0% nickel, at most 1.0% Co, at most 0.5% copper, at most 0.1% vanadium, 0.001 to 0.010% oxygen and/or 0.0001-0.008% boron, the rest iron and, wherein the alloy satisfies the following formulas:

36% <Cr+3*(Al+Si)+4.6*Mo+5.2*W+10*Nb, where Cr, Al, Si, Mo, W and Nb represent the alloying content of these elements in mass % (Formula 1 a ),

0.2* Nb≤Si≤0.7* Nb, ′ where Si and Nb represent the alloying content of these elements in mass % (Formula 2),

19% <Cr+4*Nb+21.6* min(Si;0.5*Nb), where Cr, Si and Nb represent the alloying content of these elements in mass % and min(Si;0.5*Nb)is the smaller of the values of Si and 0.5*Nb (Formula 3 a ).

2. The solid oxide fuel cell according to claim 1 , wherein the alloy has a silicon content (in mass %) of 0.05 to 1.0%.

3. The solid oxide fuel cell according to claim 1 , wherein the alloy has a carbon content (in mass %) of 0.002 to 0,020%.

4. The solid oxide fuel cell according to claim 1 , wherein the alloy has a tungsten content (in mass %) of 1.5 to 3%.

5. The solid oxide fuel cell according to claim 1 , wherein the alloy has (in mass %) 0.0001 to 0.03% Mg and 0.0001 to 0.02% Ca.

6. The solid oxide fuel cell according to claim 1 , wherein the alloy has (in mass %) 0.010 to 0.25% P.

7. A solid oxide fuel cell comprising a first component selected from the group consisting of a reformer and a heat exchanger,

wherein the reformer or the heat exchanger comprises an iron-chromium-aluminum alloy, with (in mass %) 3.0 to 4.5% Al, 16 to 23% Cr, 1.0 to 4% W, 0.25 to 2.0% Nb, 0.05 to 1,2% Si, 0.001 to 0.70% Mn, 0.001 to 0.030% C, 0.0001 to 0.05% Mg, 0.0001 to 0.03% Ca, 0.001 to 0.030% P, max. 0.03% N, max. 0.01% S, additionally containing 0.01 to 0.10% yttrium, 0.01 to 0.10% hafnium; 0.01 to 0.10% zirconium, wherein W can be replaced by 1 to 4% Mo, wherein Y can be replaced completely or partly by 0.01 to 0.10% of at least one of the elements Sc and/or La and/or cerium and wherein Hf or Zr can be replaced completely or partly by 0.01 to 0.1% of the element Ti, if necessary optionally further containing at most 1.0% nickel, at most 1.0% Co, at most 0.5% copper, at most 0.1% vanadium, 0.001 to 0.010% oxygen and/or 0.0001-0.008% boron, the rest iron and, wherein the alloy satisfies the following formulas:

36% <Cr+3*(Al+Si)+4.6*Mo+5.2*W+10*Nb, where Cr, Al, Si, Mo, W and Nb represent the alloying content of these elements in mass % (Formula 1 a ),

0.2* Nb<Si<0.7* Nb, where Si and Nb represent the alloying content of these elements in mass % (Formula 2),

19% <Cr+4*Nb+21.6* min(Si;0.5*Nb), where Cr, Si and Nb represent the alloying content of these elements in mass % and min(Si;0.5*Nb) is the smaller of the values of Si and 0.5*Nb (Formula 3 a ).

8. The solid oxide fuel cell according to claim 7 , wherein the alloy has a silicon content (in mass %) of 0.05 to 1.0%.

9. The solid oxide fuel cell according to claim 7 , wherein the alloy has a carbon content (in mass %) of 0.002 to 0.020%.

10. The solid oxide fuel cell according to claim 7 , wherein the alloy has a tungsten content (in mass %) of 1.5 to 3%.

11. The solid oxide fuel cell according to claim 7 , wherein the alloy has (in mass %) 0.0001 to 0.03% Mg and 0.0001 to 0.02% Ca.

12. The solid oxide fuel cell according to claim 7 , wherein the alloy has (in mass %) 0.010 to 0.25% P.

Assignments (3)
ASSET TRANSFER BY WAY OF SPLIT-OFF Recorded Aug 19, 2016
From: VDM METALS GMBH
To: VDM METALS INTERNATIONAL GMBH
Reel/Frame 039752/0065 →
CHANGE OF NAME Recorded Aug 19, 2016
From: OUTOKUMPU VDM GMBH
To: VDM METALS GMBH
Reel/Frame 039754/0311 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2014
From: HATTENDORF, HEIKE; KUHN, BERND; ECKARDT, THOMAS; BECK, TILMANN; QUADAKKERS, WILLEM JOE; THEISEN, WERNER; NABIRAN, NILOFAR
To: OUTOKUMPU VDM GMBH
Reel/Frame 032537/0349 →
Priority Claims (2)
DE 10 2011 111 703 · Jun 21, 2011 · national
DE 10 2012 004 488 · Mar 6, 2012 · national
Continuity (1)
Related Publication 20140219855A1 · Aug 7, 2014
Cited By (1)
US 12,258,654