Invention Grant
- Patent Title: High Cr Ni-based alloy welding wire, shielded metal arc welding rod, and weld metal formed by shielded metal arc welding
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Application No.: US13982878Application Date: 2012-01-27
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Publication No.: US10675720B2Publication Date: 2020-06-09
- Inventor: Kenji Kawasaki , Seiichi Kawaguchi , Masahiko Toyoda , Seiji Asada , Akira Konishi , Yusuke Sano , Tamao Takatsu , Teiichiro Saito , Tetsuya Sango , Norihito Ogawa
- Applicant: Kenji Kawasaki , Seiichi Kawaguchi , Masahiko Toyoda , Seiji Asada , Akira Konishi , Yusuke Sano , Tamao Takatsu , Teiichiro Saito , Tetsuya Sango , Norihito Ogawa
- Applicant Address: JP Tokyo JP Tokyo
- Assignee: MITSUBISHI HEAVY INDUSTRIES, LTD.,NIPPON WELDING ROD CO., LTD.
- Current Assignee: MITSUBISHI HEAVY INDUSTRIES, LTD.,NIPPON WELDING ROD CO., LTD.
- Current Assignee Address: JP Tokyo JP Tokyo
- Agency: Pearne & Gordon LLP
- Priority: com.zzzhc.datahub.patent.etl.us.BibliographicData$PriorityClaim@4c74f6e0
- International Application: PCT/JP2012/051837 WO 20120127
- International Announcement: WO2012/105452 WO 20120809
- Main IPC: B23K35/34
- IPC: B23K35/34 ; B23K35/30 ; B23K35/02 ; C22C19/05

Abstract:
Provided is a high Cr Ni-based alloy welding wire with which tensile strength and weld cracking resistance of a welded portion, the integrity of the microstructure of a welded metal, and inhibition of scale generation are improved. The high Cr Ni-based alloy welding wire is configured to have an alloy composition comprising, by mass, C: 0.04% or less, Mn: 7% or less, Fe: 1 to 12%, Si: 0.75% or less, Al: 0.01 to 0.7%, Ti: 0.01 to 0.7%, Cr: 25.0 to 31.5%, Ta: 1 to 10%, and Mo: 1 to 6%, and as inevitable impurities, Ca+Mg: less than 0.002%, N: 0.1% or less, P: 0.02% or less, O: 0.01% or less, S: 0.0015% or less, H: 0.0015% or less, Cu: 0.08% or less, and Co: 0.05% or less, and the balance: Ni. Then, the high CrNi-based alloy welding wire is configured such that the contents of S, Ta, Al, and Ti satisfy the following relation (1) and the contents of Ta, Mo, and N satisfy the following relation (2): 12000S+0.58Ta−2.6Al−2Ti£19.3 (1) Ta+1.6Mo+187N35.7 (2).
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