IP Library Granted Patent US 11,229,978
Granted Patent B2
US 11,229,978 · App. 16/470,541 · Granted Jan 25, 2022

Brazing sheet for flux-free brazing, method for flux-free brazing and method for manufacturing heat exchanger

Inventor: Hideyuki Miyake (Shizuoka, JP)
Assignee: MITSUBISHI ALUMINUM CO., LTD.
B23K35/0238B23K1/0012B23K35/286B32B15/016C22C21/02B23K2101/14B23K2103/10F28F2275/045Y10T428/12764
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Quick Facts
Patent No.
US 11,229,978
App. No.
16/470,541
Granted
Jan 25, 2022
Kind
B2
Abstract

A brazing sheet for flux-free brazing has an outermost surface brazing filler metal layer, consisting of an Al—Si-based alloy containing 2 to 13% Si in mass %, and an intermediate brazing filler metal layer, consisting of an Al—Si—Mg-based alloy containing 4 to 13% Si and 0.1 to 5.0% Mg in mass %, which are cladded on one or both sides of a core material. In the outermost surface brazing filler metal layer, the number of Si particles having a circle equivalent diameter of 1.75 μm or more is 10% or more of the number having a circle equivalent diameter of 0.8 μm or more, as observed in the direction of the surface layer. The intermediate brazing filler metal layer contains less than 3000 per 10000 μm 2 of Si particles having a circle equivalent diameter of 0.25 μm or more, as observed in a cross section of the brazing filler metal layer.

Claims (18)

1. A brazing sheet for flux-free brazing, comprising:

an outermost surface brazing filler metal layer, consisting of an Al—Si-based alloy comprising 2 to 13% Si in mass %; and

an intermediate brazing filler metal layer consisting of an Al—Si—Mg-based alloy containing 4 to 13% Si and 0.1 to 5.0% Mg in mass %,

wherein the outermost surface brazing filler metal layer and the intermediate brazing filler metal layer are cladded on one or both sides of a core material,

wherein, in the outermost surface brazing filler metal layer, a number of Si particles having a circle equivalent diameter of 1.75 μm or more is 10% or more of a number of Si particles having a circle equivalent diameter of 0.8 μm or more, as observed in a direction of a surface layer, and

wherein the intermediate brazing filler metal layer contains less than 3000 per 10000 μm 2 of Si particles having a circle equivalent diameter of 0.25 μm or more, as observed in a cross section of the intermediate brazing filler metal layer.

2. The brazing sheet for flux-free brazing according to claim 1 , wherein the Al—Si-based alloy of the outermost surface brazing filler metal layer contains Si in an amount of 2% or more and less than 4% in mass %.

3. The brazing sheet for flux-free brazing according to claim 1 , wherein the Al—Si-based alloy of the outermost surface brazing filler metal layer further comprises 0.1 to 1.0% Fe in mass %.

4. The brazing sheet for flux-free brazing according to claim 1 , wherein a liquidus temperature difference between the intermediate brazing filler metal layer and the outermost surface brazing filler metal layer is less than 50° C.

5. The brazing sheet for flux-free brazing according to claim 1 , wherein cladding ratios of the outermost surface brazing filler metal layer and the intermediate brazing filler metal layer are 1 to 30% per side relative to an overall thickness of the brazing sheet, respectively.

6. The brazing sheet for flux-free brazing according to claim 1 , wherein the Al—Si—Mg-based alloy of the intermediate brazing filler metal layer further comprises 0.01 to 0.5% Bi in mass %.

7. The brazing sheet for flux-free brazing according to claim 1 , wherein the Al—Si-based alloy of the outermost surface brazing filler metal layer further comprises 0.01 to 0.5% Bi in mass %.

8. A method for flux-free brazing of aluminum members, wherein the aluminum members are joined to each other without using flux in a non-oxidizing gas atmosphere with an oxygen concentration of 100 ppm or less, using the brazing sheets for flux-free brazing according to claim 1 .

9. A method for manufacturing a heat exchanger, wherein the aluminum members are joined to each other without using flux in a non-oxidizing gas atmosphere with an oxygen concentration of 100 ppm or less, using the brazing sheets for flux-free brazing according to claim 1 .

10. The method according to claim 8 , wherein the Al—Si—Mg-based alloy of the intermediate brazing filler metal layer further comprises 0.01 to 0.5% Bi in mass %.

11. The method according to claim 8 , wherein the Al—Si-based alloy of the outermost surface brazing filler metal layer further comprises 0.01 to 0.5% Bi in mass %.

12. The method according to claim 9 , wherein the Al—Si—Mg-based alloy of the intermediate brazing filler metal layer further comprises 0.01 to 0.5% Bi in mass %.

13. The method according to claim 9 , wherein the Al—Si-based alloy of the outermost surface brazing filler metal layer further comprises 0.01 to 0.5% Bi in mass %.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2023
From: ALTEMIRA CO., LTD.
To: MA ALUMINUM CORPORATION
Reel/Frame 065185/0895 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2023
From: MMA COMPANY, LTD.
To: ALTEMIRA CO., LTD.
Reel/Frame 065164/0726 →
CHANGE OF NAME Recorded Dec 21, 2022
From: MITSUBISHI ALUMINUM CO., LTD.
To: MMA COMPANY, LTD.
Reel/Frame 062202/0216 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2019
From: MIYAKE, HIDEYUKI
To: MITSUBISHI ALUMINUM CO., LTD.
Reel/Frame 049494/0804 →
Priority Claims (2)
JP JP2016-253307 · Dec 27, 2016 · national
JP JP2017-030181 · Feb 21, 2017 · national
Continuity (1)
Related Publication 20200086428A1 · Mar 19, 2020