IP Library Granted Patent US 9,546,829
Granted Patent B2
US 9,546,829 · App. 14/206,058 · Granted Jan 17, 2017

Brazing sheet core alloy for heat exchanger

Inventors: Andrew D. Howells (Kingston, CA); Hany Ahmed (Atlanta, GA); Kevin Michael Gatenby (Johns Creek, GA); Jyothi Kadali (Atlanta, GA); Pierre Henri Marois (Kingston, CA)
Assignee: Novelis Inc.
F28F21/084B22D11/003B22D11/007B23K35/0238B32B15/016C22C21/00C22C21/02C22C21/10Y10T428/1241Y10T428/12354Y10T428/12375Y10T428/12396Y10T428/12417Y10T428/12583Y10T428/12736Y10T428/12764Y10T428/13
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Quick Facts
Patent No.
US 9,546,829
App. No.
14/206,058
Granted
Jan 17, 2017
Kind
B2
Abstract

The present invention provides a new aluminum alloy material which may be used for a core alloy of a corrosion-resistant brazing sheet. This core alloy displays with high strength, and good corrosion resistance for use in heat exchangers. This aluminum alloy material was made by direct chill (DC) casting. The present inventions also provides corrosion-resistant brazing sheet packages including the aluminum alloy material as a core and one or more cladding layers.

Claims (31)

1. A multi-layer metal sheet, comprising:

a core layer comprising an aluminum alloy comprising 0.16 to 0.5 wt. % Si, 0.5 to 1.1 wt. % Cu, 0.001 to 0.20 wt. % Ti, 0.15 to 0.55 wt. % Fe, 0 to 0.35 wt. % Mg, and 1.3 to 1.80 wt. % Mn, up to 0.15 wt. % of impurities, with the remainder as Al, wherein the core layer has a first side and a second side, and

a cladding layer on the first side of the core layer; and

wherein the alloy exhibits formation of a dense precipitation band during brazing which contains Si content up to 0.5 wt. % in the alloy of the core layer.

2. The multi-layer metal sheet of claim 1 , wherein the core layer comprises 0.16 to 0.4 wt. % Si, 0.5 to 1.0 wt. % Cu, 0.005 to 0.15 wt. % Ti, 0.20 to 0.50 wt. % Fe, 0 to 0.29 wt. % Mg, and 1.4 to 1.70 wt. % Mn, up to 0.15 wt. % of impurities, with the remainder as Al.

3. The multi-layer metal sheet of claim 1 , wherein the core layer comprises 0.16 to 0.34 wt. % Si, 0.5 to 0.95 wt. % Cu, 0.01 to 0.15 wt. % Ti, 0.25 to 0.45 wt. % Fe, 0 to 0.27 wt. % Mg, and 1.45 to 1.65 wt. % Mn, up to 0.15% of impurities, with the remainder as Al.

4. The multi-layer metal sheet of claim 1 , wherein the core layer comprises 0.2 to 0.5 wt. % Si, 0.52 to 0.80 wt. % Cu, 0.11 to 0.20 wt. % Ti, 0.25 to 0.55 wt. % Fe, 0 to 0.2 wt. % Mg, and 1.51 to 1.80 wt. % Mn, up to 0.15% of impurities, remainder Al.

5. The multi-layer metal sheet of claim 1 , wherein at least one individual impurity in the impurities is from scrap metal and is 0.05 wt. % or less.

6. The multi-layer metal sheet of claim 5 , wherein the at least one impurity is Cr, Zr or V.

7. The multi-layer metal sheet of claim 1 , wherein the alloy is produced by direct chill casting, followed by hot and cold rolling.

8. The multi-layer metal sheet of claim 1 , comprising a minimum yield strength of about 71 MPa and a minimum ultimate tensile strength of about 182 MPa, measured after brazing.

9. The multi-layer metal sheet of claim 1 , comprising a corrosion potential of −670 mV or less in terms of absolute value amounts in the core, measured after brazing.

10. The multi-layer metal sheet of claim 1 , wherein the difference in corrosion potential between the dense precipitation band and core (vs. Standard Calomel Electrode (SCE)) is between 30 to 40 my.

11. The multi-layer metal sheet of claim 1 , wherein the alloy withstands at least 28 days without perforation during airside corrosion testing after brazing.

12. The multi-layer metal sheet of claim 1 further comprising a second clad layer on the second side of the core layer.

13. The multi-layer metal sheet of claim 12 , wherein the first side of the core layer is adjacent to the first cladding layer to form a first interface and the second side of the core layer is adjacent to a second cladding layer to form a second interface.

14. The multi-layer metal sheet of claim 1 , wherein the cladding layer comprises from 0 wt. % to 4 wt. % Zn, 1 wt. % to 4 wt. % Zn or 2.5 wt. % to 4.0 wt. % Zn.

15. A corrosion resistant brazing sheet comprising the multi-layer metal sheet of claim 1 .

16. A heat exchanger comprising the multi-layer metal sheet of claim 1 .

17. The heat exchanger of claim 16 , wherein the heat exchanger is an automotive heat exchanger.

18. The heat exchanger of claim 16 , wherein the heat exchanger is a radiator, a condenser, an evaporator, an oil cooler, an inter cooler, a charge air cooler or a heater core.

19. A tube made of the multi-layer metal sheet of claim 1 .

20. A multi-layer metal sheet, comprising:

a core layer of aluminum-containing alloy comprising from 0.1 wt. % to 0.2 wt. % of titanium, wherein the core layer has a first side and a second side;

a first cladding layer comprising from 2.5 wt. % to 4.0 wt. % of zinc; and

a second cladding layer comprising from 2.5 wt. % to 4.0 wt. % of zinc,

wherein the first side of the core layer is adjacent to the first cladding layer to form a first interface and the second side of the core layer is adjacent to a second cladding layer to form a second interface; and

wherein the alloy exhibits formation of a dense precipitation band during brazing which contains Si content up to 0.5 wt. % in the alloy of the core layer.

21. The multi-layer metal sheet of claim 20 , wherein the core layer is made of an alloy comprising up to 0.25 wt. % Si, up to 0.25 wt. % Fe, from 0.5 to 0.6 wt. % Cu, from 1.4 to 1.6 wt. % Mn, from 0.06 to 0.14 wt. % Mg, up to 0.05 wt. % Cr, up to 0.04 wt. % Zn, up to 0.05 wt. % Sr, up to 0.15 wt. % impurities, and the remainder Al.

22. The multi-layer metal sheet of claim 20 , wherein one or both of the first cladding layer and the second cladding layer are made of an alloy comprising from 6 to 13 wt. % Si, up to 0.4 wt. % Fe, up to 0.1 wt. % Cu, up to 0.1 wt. % Mn, up to 0.20 wt. % Mg, up to 0.05 wt. % Cr, up to 0.05 wt. % Ti, up to 0.02 wt. % Sr, up to 0.15 wt. % impurities, and the remainder Al.

23. A tube made of the multi-layer metal sheet of claim 20 .

Assignments (10)
RELEASE OF SECURITY INTEREST AT REEL/FRAME 41389/0077 Recorded Mar 13, 2025
From: STANDARD CHARTERED BANK
To: NOVELIS INC.; NOVELIS KOBLENZ GMBH
Reel/Frame 070502/0196 →
SECURITY INTEREST Recorded Mar 11, 2025
From: NOVELIS DEUTSCHLAND GMBH; NOVELIS INC.; NOVELIS KOBLENZ GMBH
To: CITIBANK, N.A.
Reel/Frame 070481/0417 →
SECURITY INTEREST Recorded May 21, 2019
From: NOVELIS INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 049247/0325 →
RELEASE OF SECURITY INTEREST Recorded Jan 17, 2017
From: BANK OF AMERICA, N.A.
To: NOVELIS INC.
Reel/Frame 041410/0858 →
SECURITY INTEREST Recorded Jan 17, 2017
From: NOVELIS INC.
To: STANDARD CHARTERED BANK
Reel/Frame 041389/0077 →
RELEASE OF SECURITY INTEREST Recorded Jul 29, 2016
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NOVELIS INC.
Reel/Frame 039508/0249 →
SECURITY INTEREST Recorded Jun 12, 2015
From: NOVELIS INC.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 035947/0038 →
SECURITY INTEREST Recorded Jun 9, 2015
From: NOVELIS INC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 035871/0735 →
SECURITY INTEREST Recorded Jun 5, 2015
From: NOVELIS, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 035833/0972 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2014
From: HOWELLS, ANDREW D.; AHMED, HANY; GATENBY, KEVIN MICHAEL; KADALI, JYOTHI; MAROIS, PIERRE HENRI
To: NOVELIS INC.
Reel/Frame 032774/0121 →
Continuity (3)
Provisional Application 61779149 · Mar 13, 2013
Provisional Application 61883461 · Sep 27, 2013
Related Publication 20140272460A1 · Sep 18, 2014