Title :
Study on laser hybrid welding process monitoring
Author :
Hee-Shin Kang ; Ji-Whan Noh
Author_Institution :
Dept. of Laser & E-beam Applic., Korea Inst. of Machinery & Mater., Daejeon, South Korea
Abstract :
In this paper, a study of process monitoring technology for the laser hybrid welding was conducted. The laser welding, arc welding and the industrial robotic systems were used with robot-based laser hybrid welding systems. The laser source, arc welding and robot systems are used to increase the processing speed and to improve the efficiency of welding processes. The robot-based laser hybrid welding system was equipped with a laser head and arc welding gun for laser hybrid welding. The welding joints of steel plate and aluminum plate were butt and Fillet joints. The quality testing of the laser hybrid welding was conducted by observing the shape of the beads on the plate and the cross-section of the welded parts, analyzing the results of mechanical tensile test, and monitoring the plasma intensity by using UV and IR sensor. This paper proposes the quality monitoring method and the robot-based laser hybrid welding system as a means of resolving the limited welding speed and accuracy of conventional laser welding systems.
Keywords :
aluminium; arc welding; butt welding; infrared detectors; laser beam welding; plates (structures); process monitoring; quality control; robotic welding; steel; tensile testing; welding equipment; IR sensor; UV sensor; aluminum plate welding joints; arc welding; arc welding gun; bead shape; butt joints; fillet joints; industrial robotic systems; laser head; laser hybrid welding process monitoring; laser source; mechanical tensile test; plasma intensity monitoring; quality monitoring method; quality testing; robot-based laser hybrid welding systems; steel plate welding joints; welded part cross-section; welding process efficiency; welding processing speed; Joints; Laser applications; Monitoring; Robot sensing systems; Welding; hybrid; laser; monitoring; process; welding;
Conference_Titel :
Control, Automation and Systems (ICCAS), 2013 13th International Conference on
Conference_Location :
Gwangju
Print_ISBN :
978-89-93215-05-2
DOI :
10.1109/ICCAS.2013.6704100