Dynamic Electrode Force and Displacement in Resistance Spot Welding of Aluminum

Author:

Ji, C. T.1,Zhou, Y.1

Affiliation:

1. Department of Materials Engineering, Nanchang Institute of Aeronautical Technology, Nanchang, Jiangxi, 330034, P.R. China

Abstract

Dynamic electrode displacement and force were characterized during resistance spot welding of aluminum alloy 5182 sheets using a medium-frequency direct-current welder. It was found that both electrode displacement and force increased rapidly at the beginning of the welding stage and then at a reducing rate. Rates of increase in electrode displacement and force were both proportional to welding current. And both electrode displacement and force experienced a sudden drop when weld metal expulsion occurred. However, the rate of increase in electrode displacement did not reach zero during welding even for joints with sufficient nugget diameter, while electrode force peaked when a large nugget diameter was produced. Possible strategies for process monitoring and control were also discussed.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference15 articles.

1. RWMA, Resistance Welding Manual (Fourth Edition), 1989, Resistance Welder Manufacturers Association, Philadelphia, PA.

2. Beatson, E.V., 1977, “An Introduction to Quality Control Systems in Resistance Welding,” Resistance Welding Control and Monitoring, K.I. Johnson, ed., The Welding Institute, Abington Hall, Abington, Cambrdge, UK, pp. 2–7.

3. Messler, R.W., and Jou, M., 1996, “Review of Control Systems for Resistance Spot Welding: Past and Current Practices,” Sci. Technol. Weld. Joining, 1(1), pp. 1–9.

4. Janota, M., 1974, “The Relationship Between Thermal Expansion and the Growth of a Resistance Spot Weld,” The Third International Conference on Advances in Welding Processes, The Welding Institute, Paper 40, Harrogate, 7–9 May, pp. 21–26.

5. Chien, C.-S., and Kannatey-Asibu, Jr., E., 2002, “Investigation of Monitoring Systems for Resistance Spot Welding,” Weld. J. (Miami, FL, U. S.), 81(9), pp. 195-s–199-s195-s–199-s.

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