DocumentCode :
1410337
Title :
Application of fuzzy logic to spatial thermal control in fusion welding
Author :
Bingül, Zafer ; Cook, George E. ; Strauss, Alvin M.
Author_Institution :
Vanderbilt Univ., Nashville, TN, USA
Volume :
36
Issue :
6
fYear :
2000
Firstpage :
1523
Lastpage :
1530
Abstract :
This paper considers the problem of sensing and controlling torch position in the pulsed gas metal arc welding (P-GMAW) process. The attitude and positional control described is essential to the production of quality welds with a specified geometry. For constant current arc welding processes, as normally employed with P-GMAW, the arc voltage signal variations that occur as a function of changes in the contact-tube-to-work distance can be used to automatically control the welding system with respect to bead placement and proper sidewall fusion. However, the arc voltage signals are uncertain and noisy because of many inherent disturbances associated with the electrode tip, droplet formation, droplet detachment, and droplet transfer through the arc. To deal with the nonlinear time-varying process with its inherent stochastic disturbances associated with the metal transfer, the theory of fuzzy sets was used as a general framework to interpret the uncertain arc signals and provide logic for control. The fuzzy logic controller weld joint tracking system was implemented and tested with pulsed gas metal arc welds under a variety of conditions. The goal was to obtain quick and accurate response to tracking errors in the presence of disturbances. A series of experiments was conducted to evaluate the performance of the fuzzy logic controller. The experimental results show that the fuzzy logic controller was found to be suitable for these purposes and better than methods based on signal averaging and bipolar decision levels under these criteria.
Keywords :
arc welding; attitude control; fuzzy control; fuzzy set theory; position control; arc voltage signal variations; attitude control; bead placement; constant current arc welding; contact-tube-to-work distance; droplet detachment; droplet formation; droplet transfer; electrode tip; fusion welding; fuzzy logic; fuzzy logic controller weld joint tracking system; inherent stochastic disturbances; metal transfer; nonlinear time-varying process; pulsed gas metal arc welding; pulsed gas metal arc welds; quality welds; sidewall fusion; spatial thermal control; torch position control; torch position sensing; tracking errors; uncertain arc signals; weld seam tracking control; Attitude control; Automatic control; Automatic voltage control; Control systems; Electrodes; Fuzzy logic; Geometry; Production; Signal processing; Welding;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.887202
Filename :
887202
Link To Document :
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