Recently, the development of laser welding technology with dissimilar metal is demanded in the automobile, aerospace, and sea-water plant industry. Titanium alloy has been increasing to use for important mechanical parts. In this study, the lap joint welding was performed with dissimilar metal sheets such as titanium and steel by CW fiber laser. The welding strength of dissimilar metal was estimated by tensile shear test. The characteristics of bead were investigated under various experimental conditions. Especially, the effect of welding speed on the formation of inter-metallic compound was examined to get higher tensile strength of joint. A sound bead formation with high velocity was discussed to find out the relationship between diameter of focused beam size and welding speed. The diameter of focused beam was closely related with the actual Key-hole diameter. That is, as the diameter of key hole was smaller the possibility of the high speed welding was better.
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3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication
April 16–18, 2008
Beijing, People's Republic of China
ISBN:
978-0-912035-89-5
PROCEEDINGS PAPER
Dissimilar metal welding titanium and steel sheet by fiber laser Available to Purchase
Seo-Jeong Park;
Seo-Jeong Park
1
Welding Research Center, RIST
, Pohang city 790-330, South Korea
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Jong-Do kim;
Jong-Do kim
2
Department of Marine system engineering, Korea Maritime University
, Youngdo-ku Susan 606-791, South korea
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Woong-Seong Chang
Woong-Seong Chang
1
Welding Research Center, RIST
, Pohang city 790-330, South Korea
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Published Online:
April 01 2008
Citation
Seo-Jeong Park, Jong-Do kim, Woong-Seong Chang; April 16–18, 2008. "Dissimilar metal welding titanium and steel sheet by fiber laser." Proceedings of the 3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication. PICALO 2008: 3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication. Beijing, People's Republic of China. (pp. pp. 158-162). ASME. https://doi.org/10.2351/1.5056997
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