Invention Grant
- Patent Title: High-strength aluminum alloy fin material and production method thereof
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Application No.: US14423163Application Date: 2013-06-04
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Publication No.: US10280495B2Publication Date: 2019-05-07
- Inventor: Takanori Kokubo , Toshiya Anami , Hayaki Teramoto , Hideyuki Ota , Toshihide Ninagawa
- Applicant: DENSO CORPORATION , NIPPON LIGHT METAL COMPANY, LTD. , NOVELIS INC.
- Applicant Address: JP Aichi US GA Atlanta JP Tokyo
- Assignee: DENSO CORPORATION,NOVELIS INC.,NIPPON LIGHT METAL COMPANY, LTD.
- Current Assignee: DENSO CORPORATION,NOVELIS INC.,NIPPON LIGHT METAL COMPANY, LTD.
- Current Assignee Address: JP Aichi US GA Atlanta JP Tokyo
- Agency: Millen White Zelano and Branigan, PC
- Agent Csaba Henter
- Priority: JP2012-190397 20120830
- International Application: PCT/JP2013/065468 WO 20130604
- International Announcement: WO2014/034212 WO 20140306
- Main IPC: C22F1/04
- IPC: C22F1/04 ; C22C21/00 ; C22F1/053 ; C22C21/02 ; F28F21/08 ; F28F1/12 ; B22D11/00 ; C22C21/10 ; C22F1/043 ; F28F19/00

Abstract:
An aluminum alloy fin material for heat exchanger use having a 35 to 50 μm thickness, a small springback at the time of corrugation, a suitable strength before brazing enabling easy fin formation, a high strength after brazing, and excellent erosion resistance, self corrosion resistance, and sacrificial anodic effect and a method of production of the same are provided. A fin material containing, by mass %, Si: 0.9 to 1.2%, Fe: 0.8 to 1.1%, Mn: 1.1 to 1.4%, and Zn: 0.9 to 1.1%, further limiting the impurity Mg to 0.05% or less, Cu to 0.03% or less, and ([Si]+[Fe]+2[Mn])/3 to 1.4% to 1.6%, and having a balance of unavoidable impurities and Al. A method of production prescribing hot rolling, cold rolling, intermediate annealing, and final cold rolling.
Public/Granted literature
- US20150252461A1 HIGH-STRENGTH ALUMINUM ALLOY FIN MATERIAL AND PRODUCTION METHOD THEREOF Public/Granted day:2015-09-10
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