Title :
Approximate model for laser welding
Author :
Michel, Jan ; Pfeiffer, Stefan ; Schulz, Wolfgang ; Niessen, M. ; Kostrykin, Vadim
Author_Institution :
Lehrstuhl fur Lasertechnik, RWTH, Aachen, Germany
Abstract :
The industrial application of laser welding implies a reliable and efficient production process. Thus, modelling and simulation is used to reveal the crucial points of the welding process. The welding process is described by transport phenomena for mass, momentum and energy. The three involved phases (solid, liquid, gaseous) interact over their free moving phase boundaries. The existing boundary layer character allows to reduce the dimension of this Free Boundary Problem. The resulting welding model reproduces the time-dependent spatially 3d-distributed welding process. Technical relevant predication about seam width and depth are compared to experimental results; the possibility to control predictively the welding process is investigated. The reproduction of thermal monitoring signals from the interaction zone between laser and material is approached.
Keywords :
boundary layers; laser beam cutting; laser beam welding; approximate model; boundary layer character; efficient production process; free moving phase boundary; laser welding; thermal monitoring signal; welding process; Biological materials; Gas lasers; Laser applications; Laser beam cutting; Laser modes; Laser theory; Monitoring; Production; Solids; Welding;
Conference_Titel :
Lasers and Electro-Optics Europe, 2003. CLEO/Europe. 2003 Conference on
Print_ISBN :
0-7803-7734-6
DOI :
10.1109/CLEOE.2003.1313625