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Comparative evaluation of Nb, Nb-Cu, and Ta-Cu interlayers on microstructural and mechanical behavior of dissimilar welds of grade 6 Ti and stainless steel. [PDF]
Jawad M +5 more
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Application of CMT-Twin DED-Arc Process on the Fabrication of Invar 36 by In Situ Alloying. [PDF]
Iturrioz A, Pereira JC, Ukar E.
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Artificial Intelligence in Metal Additive Manufacturing: Applications in Design, Process Modeling, Monitoring, and Quality Optimization. [PDF]
Sustacha J +3 more
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Welding Seam Recognition and Trajectory Planning Based on Deep Learning in Electron Beam Welding. [PDF]
Yang H, Zuo C, Xu H, Xu X.
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Problems and issues in laser-arc hybrid welding
International Materials Reviews, 2009Abstract Hybrid welding, using the combination of a laser and an electrical arc, is designed to overcome problems commonly encountered during either laser or arc welding such as cracking, brittle phase formation and porosity. When placed in close contact with each other, the two heat sources interact in such a way as to produce a single high intensity ...
T A Palmer, T DebRoy
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Synergetic effects of hybrid laser/arc welding
Science and Technology of Welding and Joining, 2005The present study reports the results of a study examining the synergetic effects of hybrid laser/arc welding. Experiments were carried out with a 500 W Nd:YAG laser in combination with standard gas tungsten arc welding equipment and attention was focused on two aspects: the heat transfer efficiency and the melting efficiency.
G den Ouden
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Hybrid laser arc welding: State-of-art review
Optics and Laser Technology, 2018Abstract Hybrid laser arc welding simultaneously utilizes the arc welding and the laser welding, in a common interaction zone. The synergic effects of laser beam and eclectic arc in the same weld pool results in an increase of welding speed and penetration depth along with the enhancement of gap bridging capability and process stability.
Bappa Acherjee
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This paper describes the droplet transfer behavior and weld formation of laser-arc hybrid welding with cable-type welding wire (CWW). The droplet transfer behavior was photographed in real time by using a high-speed camera.
Zhidong Yang, Peng He, Mingxiao Shi
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