Disclosed is an aluminum alloy brazing sheet for heat exchangers, which has high strength after brazing, high corrosion resistance and excellent brazability. Specifically disclosed is an aluminum alloy brazing sheet (1a) for heat exchangers comprising a core member (2), a sacrificial member (3) form
Disclosed is an aluminum alloy brazing sheet for heat exchangers, which has high strength after brazing, high corrosion resistance and excellent brazability. Specifically disclosed is an aluminum alloy brazing sheet (1a) for heat exchangers comprising a core member (2), a sacrificial member (3) formed on one side of the core member (2), and a brazing filler metal (4) formed on the other side of the core member (2) and composed of an Al—Si alloy. The sacrificial member (3) contains 0.03-0.30% by mass of Fe, 0.01-0.40% by mass of Mn, 0.4-1.4% by mass of Si, 2.0-5.5% by mass of Zn, not more than 0.05% by mass of Mg and the balance of Al and unavoidable impurities. In addition, the sacrificial member (3) has a crystal grain size of 100-400 & mgr;m after 5-minute heat treatment at 600 & ring;C during the brazing.
대표청구항▼
1. An aluminum alloy brazing sheet, comprising a core material, a sacrificial anode material formed in one face side of the core material, and a brazing filler metal made of an Al-Si based alloy formed in the other face side of the core material, wherein the sacrificial anode material has a composit
1. An aluminum alloy brazing sheet, comprising a core material, a sacrificial anode material formed in one face side of the core material, and a brazing filler metal made of an Al-Si based alloy formed in the other face side of the core material, wherein the sacrificial anode material has a composition comprising Fe: 0.03 to 0.30% by mass, Mn: 0.01 to 0.40% by mass, Si: larger than 0.4 and 1.4% or less by mass, Zn 2.0 to 5.5% by mass, Mg: 0.05% by mass or less, and Al and inevitable impurities and wherein the sacrificial anode material after a heat treatment of 600° C.×5 minutes has a crystal grain size in a range of from 100 to 400 μm. 2. The aluminum alloy brazing sheet according to claim 1, wherein the crystal grain size is in a range of from 120 to 380 μm. 3. The aluminum alloy brazing sheet according to claim 1, wherein a thickness of the sacrificial anode material is in a range of from 30 to 55 μm. 4. The aluminum alloy brazing sheet according to claim 1, wherein the brazing filler metal has a composition comprising Si in a range of from 7 to 12% by mass. 5. The aluminum alloy brazing sheet according to claim 1, wherein the aluminum alloy brazing sheet further comprises an intermediate material. 6. The aluminum alloy brazing sheet according to claim 5, wherein the intermediate material is placed between the core material and the brazing filler metal. 7. The aluminum alloy brazing sheet according to claim 1, wherein the composition of the sacrificial anode material comprises Si in a range of from 0.45 to 1.4% by mass. 8. The aluminum alloy brazing sheet according to claim 1, wherein the core material has a composition comprising Cu in a range of from 0.5 to 12% by mass, Mn in a range of from 0.6 to 1.9% by mass, Si in a range of from 0.5 to 1.4%, at least one of Cr and Ti in a range of from 0.05 to 0.3% by mass, Al and inevitable impurities. 9. The aluminum alloy brazing sheet according to claim 1, wherein the composition of the sacrificial anode material consists of Fe: 0.03 to 0.30% by mass, Mn: 0.01 to 0.40% by mass, Si: larger than 0.4 and 1.4% or less by mass, Zn 2.0 to 5.5% by mass, Mg: 0. 05% by mass or less, and Al and inevitable impurities.
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이 특허에 인용된 특허 (2)
Ueda,Toshiki; Koshigoe,Fumihiro; Sato,Fumihiro, Aluminum alloy composite for brazing and heat exchanger including the same.
Ando, Makoto; Murata, Takuya; Niikura, Akio, Aluminum-alloy clad material and production method therefor, and heat exchanger using said aluminum-alloy clad material and production method therefor.
Ando, Makoto; Yanagawa, Yutaka; Niikura, Akio, Cladded aluminum-alloy material and production method therefor, and heat exchanger using said cladded aluminum-alloy material and production method therefor.
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