IP Library Granted Patent US 11,759,893
Granted Patent B2
US 11,759,893 · App. 17/424,300 · Granted Sep 19, 2023

Aluminum alloy for brazing and aluminum brazing sheet

Inventors: Yoshiki Mori (Susono, JP); Hideyuki Miyake (Susono, JP); Michihide Yoshino (Susono, JP); Shohei Iwao (Sunto-gun, JP); Masakazu Edo (Susono, JP)
Assignee: MA Aluminum Corporation
B23K35/288B23K35/0238B23K35/286B32B15/016C22C21/02
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Quick Facts
Patent No.
US 11,759,893
App. No.
17/424,300
Granted
Sep 19, 2023
Kind
B2
Abstract

An aluminum alloy for flux-free brazing provided for brazing performed via an Al—Si-based brazing material without a flux in a non-oxidizing atmosphere without depressurization, includes: by mass %, 0.01% to 2.0% of Mg; and 0.005% to 1.5% of Bi, wherein in the aluminum alloy, there are more than 10 Mg—Bi-based compounds having a diameter of 0.01 μm or more and less than 5.0 μm in terms of equivalent circle diameter per 10,000-μm 2 visual field and there are less than 2 Mg—Bi-based compounds having a diameter of 5.0 μm or more per 10,000-μm 2 visual field in a cross section parallel to a rolling direction, and in the aluminum alloy, there are less than 5 Bi particles having a diameter of 5.0 μm or more in terms of equivalent circle diameter per 10,000-μm 2 visual field in the cross section parallel to the rolling direction.

Claims (40)

1. An aluminum alloy for brazing provided for brazing via an Al—Si-based brazing material, comprising: by mass %, 0.01% to 2.0% of Mg; and 0,005% to 1.5% of Bi, wherein

in the aluminum alloy, there are more than 10 Mg—Bi-based compounds having a diameter of 0.01 μm or more and less than 5.0 μm in ns of equivalent circle diameter per 10,000-μm 2 visual field and there are less than 2 Mg—Bi-based compounds having a diameter of 5.0 μm or more per 10,000-μm 2 visual field in a cross section parallel to a rolling direction, and

in the aluminum alloy, there are less than 5 Bi particles consisting of Bi having a diameter of 5.0 μm or more in terms of equivalent circle diameter per 10,000-μm 2 visual field in the cross section parallel to the rolling direction.

2. The aluminum alloy for brazing according to claim 1 , wherein

in the aluminum alloy, an atomic composition ratio between Mg and Bi is Mg/Bi=1.5 or more.

3. The aluminum alloy for brazing according to claim 1 , wherein

Ca content in the aluminum alloy is 100 ppm or less in terms of mass ppm.

4. The aluminum alloy for brazing according to claim 1 , further comprising, by mass %:

one or more of Si: 0.05% to 1.2%, Mn: 0.1% to 7.5%, Cu: 0.01% to 2.5%, Fe: 0.05% to 1.5%, Zr: 0.01% to 0.3%, Ti: 0.011% to 0.3%, Cr: 0.01% to 0.5%, and Zn: 0.1% to 9.0%.

5. The aluminum alloy for brazing according to claim 2 , further comprising, by mass %:

one or more of Si: 0.05% to 1.2%, Mn: 0.1% to 2.5%, Cu: 0.01% to 2.5%, Fe: 0.05% to 1.5%, Zr: 0.01% to 0.3%, Ti: 0.01% to 0.3%, Cr: 0.01% to 0.5%, and Zn: 0.1% to 9.0%.

6. A brazing sheet, having

a multilayer structure wherein at least one layer of the aluminum alloy according to claim 2 is laminated,

wherein at least one of the at least one layer is an outermost layer of the multilayer structure, and

the outermost layer has an Al—Si-based brazing material laminated on at least one surface thereof.

7. The brazing sheet for brazing according to claim 6 , wherein

the Al—Si-based brazing material further comprises 0.1% to 9.0% of Zn by mass %.

8. A brazing sheet having

a multilayer structure wherein at least one layer of the aluminum alloy according to claim 4 is laminated,

wherein at least one of the at least one layer is an outermost layer of the multilayer structure, and

the outermost laver has an Al—Si-based brazing material laminated on at least one surface thereof.

9. The aluminum brazing sheet according to claim 8 , wherein

in the Al—Si-based brazing material, a number of Si particles having a diameter of 1.75 μm or more in terms of equivalent circle diameter is 25% or more with respect to a number of Si particles having a diameter of 0.8 μm or more in terms of equivalent circle diameter when observed in a surface layer plane direction, the Si particles being particles consisting of Si or particles made of a compound primarily containing Fe and Si.

10. A brazing sheet, having a multilayer structure, wherein at least one layer of the aluminum alloy according to claim 1 is laminated,

wherein at least one of the at least one laver is an outermost layer of the multilayer structure, and

the outermost layer has, an Al—Si-based brazing material laminated on one surface thereof.

11. The brazing sheet for brazing according to claim 10 , wherein

the Al—Si-based brazing material comprises, by mass %, Si: 1.5% to 14%, and further comprises one or more of Mg: 0.01% to 2.0% and Bi: 0.005% to 1.5%.

12. The aluminum brazing sheet according to claim 11 , wherein

in the Al—Si-based brazing material, an area ratio of Si particles having a diameter of 1.75 μm or more in terms of equivalent circle diameter with respect to a surface area is in a range of 0.1% to 1.5%, the Si particles being particles consisting of Si or particles made of a compound primarily containing Fe and Si.

13. The aluminum brazing sheet according to claim 11 , wherein

in the Al—Si-based brazing material, a number of Si particles having a diameter of 1.75 μm or more in terms of equivalent circle diameter is 25% or more with respect to a number of the Si particles having a diameter of 0.8 μm or more in terms of equivalent circle diameter when observed in a surface layer plane direction, the Si particles being particles consisting of Si or particles made of a compound primarily containing Fe and Si.

14. The aluminum brazing sheet according to claim 11 , wherein

in the Al—Si-based brazing material, an area ratio of Si particles having a diameter of 1.75 μm or more in terms of equivalent circle diameter with respect to a surface area is in a range of 0.1% to 1.5%, the Si particles being particles consisting of Si or particles made of a compound primarily containing Fe and Si.

15. The brazing sheet for brazing according to claim 10 , wherein

the Al—Si-based brazing material further comprises 0.1% to 9.0% of Zn by mass %.

16. The aluminum brazing sheet according to claim 10 , wherein

in the Al—Si-based brazing material, a number of Si particles having a diameter of 1.75 μm or more in terms of equivalent circle diameter is 25% or more with respect to a number of Si particles having a diameter of 0.8 μm or more in terms of equivalent circle diameter when observed in a surface layer plane direction, the Si particles being particles consisting of Si or particles made of a compound primarily containing Fe and Si.

17. The aluminum brazing sheet according to claim 10 , wherein

in the Al—Si-based brazing material, an area ratio of Si particles having a diameter of 1.75 μm or more in terms of equivalent circle diameter with respect to a surface area is in a range of from 0.1% to 1.5%, the Si particles being particles consisting of Si or particles made of a compound primarily containing Fe and Si.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2022
From: MMA COMPANY, LTD.
To: ALTEMIRA CO., LTD.
Reel/Frame 061457/0235 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2022
From: ALTEMIRA CO., LTD.
To: MA ALUMINUM CORPORATION
Reel/Frame 061457/0390 →
CHANGE OF NAME Recorded Oct 18, 2022
From: MITSUBISHI ALUMINUM CO., LTD.
To: MMA COMPANY, LTD.
Reel/Frame 061701/0927 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2021
From: MORI, YOSHIKI; MIYAKE, HIDEYUKI; YOSHINO, MICHIHIDE; IWAO, SHOHEI; EDO, MASAKAZU
To: MITSUBISHI ALUMINUM CO., LTD.
Reel/Frame 056915/0309 →
Priority Claims (1)
WO PCT/JP2019/002120 · Jan 23, 2019 · international
Continuity (1)
Related Publication 20220063024A1 · Mar 3, 2022