IP Library Patent Application 16559142
Patent Application
App. No. 16/559,142

ALUMINUM ALLOY FOR HEAT EXCHANGER FINS

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 None
App. No.
16/559,142
Abstract

An aluminum alloy fin stock material comprising about 0.9-1.4 wt. % Si, 0.3-0.6 wt. % Fe, 0.20-0.60 wt. % Cu, 1.0-1.7 wt. % Mn, 0.01-0.25 wt. % Mg, 0.01-3.0 wt. % Zn, up to 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %. The aluminum alloy fin stock material is produced by a process including the steps of direct chill casting an ingot, hot rolling the ingot after the direct chill casting, cold rolling the aluminum alloy to an intermediate thickness, inter-annealing the aluminum alloy cold rolled to an intermediate thickness at a temperature between 200 and 400° C., and cold rolling the material after inter-annealing to achieve % cold work (% CW) of 20 to 40%. The aluminum alloy fin stock material possesses an improved combination of pre- and/or post-braze strength, thermal conductivity, sag resistance and/or corrosion potential.

Claims (28)

1 . An aluminum alloy, comprising about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

2 . The aluminum alloy of claim 1 , comprising about 0.95-1.35 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

3 . The aluminum alloy of claim 1 , comprising about 0.9-1.4 wt. % Si, about 0.35-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

4 . The aluminum alloy of claim 1 , comprising about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.40 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

5 . The aluminum alloy of claim 1 , comprising about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.40-0.55 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

6 . The aluminum alloy of claim 1 , comprising about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.1-1.65 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

7 . The aluminum alloy of claim 1 , comprising about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.05-0.2% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

8 . The aluminum alloy of claim 1 , comprising about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 1.5-2.75% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

9 . The aluminum alloy of claim 1 , comprising about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.05 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

10 . The aluminum alloy of claim 1 , wherein the aluminum alloy has ultimate tensile strength of one or both of: at least 200 MPa, measured in pre-brazed condition, or at least 150 MPa, measured post-brazing.

11 . The aluminum alloy of claim 1 , wherein the aluminum alloy has corrosion potential of −740 mV or less, measured post-brazing.

12 . The aluminum alloy of claim 1 , wherein the aluminum alloy has thermal conductivity of greater than 40% IACS, measured post-brazing.

13 . A heat exchanger comprising the aluminum alloy of claim 1 .

14 . A process for producing an aluminum alloy sheet, comprising:

direct chill casting an aluminum alloy comprising about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %, into an ingot;

hot rolling the ingot after the direct chill casting;

after the hot rolling, cold rolling the aluminum alloy to an intermediate thickness;

after cold rolling, inter-annealing the aluminum alloy rolled to the intermediate thickness at 200-400° C.; and,

after inter-annealing, cold rolling the aluminum alloy to achieve % cold work (% CW) of 20 to 40%, resulting in the sheet having a thickness of 45-100 μm.

15 . The process of claim 14 , wherein the inter-annealing is at a temperature from 250-360° C.

16 . The process of claim 14 , wherein the inter-annealing is at a temperature from 290-360° C.

17 . The process of claim 14 , wherein the inter-annealing time is 30 to 60 minutes.

18 . The process of claim 14 , wherein % CW is from 30 to 40%.

19 . A process of making a heat exchanger comprising joining by brazing at least one first aluminum alloy form fabricated from an aluminum alloy with a second aluminum alloy form, comprising:

assembling and securing the two or more aluminum forms together; and,

heating the two or more aluminum forms to a brazing temperature until joints are created among the two or more aluminum forms by capillary action,

wherein the first aluminum alloy comprises about 0.9-1.4 wt. % Si, about 0.3-0.6 wt. % Fe, about 0.20-0.60 wt. % Cu, about 1.0-1.7 wt. % Mn, about 0.01-0.25% Mg, about 0.1-3.0% Zn, up to about 0.10 wt. % Ti, with remainder Al and impurities at ≤0.15 wt. %.

20 . The process of claim 19 , wherein the first aluminum alloy is capable of withstanding at least 20 days of CASS testing in accordance with ASTM B368 (2014) without detaching from the joint.

Assignments (3)
SECURITY INTEREST Recorded Mar 12, 2025
From: NOVELIS INC.; NOVELIS DEUTSCHLAND GMBH; NOVELIS KOBLENZ GMBH
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 070495/0110 →
SECURITY INTEREST Recorded Mar 11, 2025
From: NOVELIS DEUTSCHLAND GMBH; NOVELIS INC.; NOVELIS KOBLENZ GMBH
To: CITIBANK, N.A.
Reel/Frame 070481/0417 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2019
From: KADALI, JYOTHI; DASCH, KYLE; WOODS, JULIA L.
To: NOVELIS INC.
Reel/Frame 050815/0755 →