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Modeling and numerical simulation of the resistance spot welding of zinc coated steel sheets using rounded tip electrode: Analysis of required conditions
Institution:1. Université de Bretagne-Sud, EA 4250, LIMATB, 56100 Lorient, France;2. Université de Technologie de Belfort Mo ntbéliard, LERMPS, 90100 Belfort cedex, France;3. PSA Peugeot Citroën, Velizy, Route de Gisy, 78943 Vélizy Villacoublay cedex, France
Abstract:This paper investigates the essential conditions to improve the accuracy of a resistance spot welding computational study of advanced zinc coated steel sheets using rounded tip electrode. An experimental analysis is performed to highlight the required considerations for a suitable simulation. A sequential Electrical-Thermal-Metallurgical and Mechanical (ETMM) finite element analysis with appropriate precautions of the contact conditions enables to accurately simulate the nugget development during the welding. A critical smooth evolution of the contact radius is required. A fine meshing with an interfacial mesh size of at least 0.05 × 10−3 m combined with a coupling time step of 0.0025 s between the electrical-thermal-metallurgical and the mechanical analysis allows a regular incrementation of the contact radius, without burdening the time computing. Accurate values of the contact resistance depending on the interfacial pressure and temperature are essential for a good simulation of the nugget size. The ETMM calculation is successfully extended to the simulation of the welding of a typical two sheets assembly.
Keywords:Numerical simulation  Resistance spot welding  Advanced steel sheet  Zinc coating  Contact radius  Contact resistance
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