Numerical Modeling of Electrode Degradation During Resistance Spot Welding Using CuCrZr Electrodes

Resistance spot welding is a technique widely used by the automotive industry to assemble thin steel sheets. The cyclic thermo-mechanical loading associated with the accumulation of weld spots progressively deteriorates the electrodes. This study addresses the development of a comprehensive multi-ph...

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Veröffentlicht in:Journal of materials engineering and performance 2014, Vol.23 (5), p.1593-1599
Hauptverfasser: Gauthier, Elise, Carron, Denis, Rogeon, Philippe, Pilvin, Philippe, Pouvreau, Cédric, Lety, Thomas, Primaux, François
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Sprache:eng
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Zusammenfassung:Resistance spot welding is a technique widely used by the automotive industry to assemble thin steel sheets. The cyclic thermo-mechanical loading associated with the accumulation of weld spots progressively deteriorates the electrodes. This study addresses the development of a comprehensive multi-physical model that describes the sequential deterioration. Welding tests achieved on uncoated and Zn-coated steel sheets are analyzed. Finite element analysis is performed using an electrical-thermal-metallurgical model. A numerical experimental design is carried out to highlight the main process parameters and boundary conditions which affect electrode degradation.
ISSN:1059-9495
1544-1024
DOI:10.1007/s11665-014-0908-9