Experimental comparison on load-carrying capacity of corner joints by laser-arc hybrid welding and arc welding
Author:
Affiliation:
1. Division of Global Architecture, Graduate School of Engineering, Osaka University, Osaka, Japan
2. IHI Corporation, Yokohama, Japan
Publisher
Japan Welding Society
Link
https://www.jstage.jst.go.jp/article/qjjws/41/4/41_9WL/_pdf
Reference7 articles.
1. 1) Üstündağ Ö, Fritzsche A, Avilov V, Gumenyuk A and Rethmeier M: Study of gap and misalignment tolerances at hybrid laser arc welding of thick-walled steel with electromagnetic weld pool support system, Procedia Cirp, 74 (2018),757–760.
2. 2) Uemura T, Gotoh K and Uchino I: Expansion of laser-arc hybrid welding to horizontal and vertical-up welding, Weld World, 66 (2022), 495–506.
3. 3) Bunaziv I, Akselsen O, Frostevarg J and Kaplan A: Application of laser-arc hybrid welding of steel for low-temperature service, The International Journal of Advanced Manufacturing Technologies, 102 (2019), 2601–2613.
4. 4) Üstündağ Ö, Bakir N, Gook S, Gumenyuk A and Rethmeier M: Hybrid laser-arc welding of laser- and plasma-cut 20-mm-thick structural steels, Weld World, 66 (2022), 507–514.
5. 5) Hirohata M, Chen G, Morioka K, Hyoma K, Matsumoto N and Inose K: An Investigation on laser-arc hybrid welding of one-pass full-penetration butt-joints for steel bridge members, Welding in the World, 66 (2021), 515-527.
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