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Joint Quality Affected by Electrode Contact Condition During Resistance Spot Welding

机译:电阻点焊过程中电极接触条件对接头质量的影响

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摘要

The effects of electrical resistance at the workpiece–electrode contact surface or the electrode face on the joint quality, characterized by nugget shape, temperature, cooling rate, and solute concentration responsible for microstructure of the fusion zone during resistance spot welding (RSW), are systematically investigated. The model accounts for electromagnetic force, heat generation due to contact resistance at the faying surface and electrode face, and bulk resistance in the workpieces. Contact resistances composed of different features of constriction and film resistances are functions of hardness, temperature, electrode force, and surface condition. The computed results show that nugget growth and transport processes are independent of the film resistance at the electrode face. An increase in constriction resistance at the electrode face, however, decreases the onset time for nugget formation, cooling rates, and axial and radial heat transfer, and increases the electrode temperature. The workpiece is susceptible to surface melting if the parameter governing constriction resistance at the electrode face is high. Solute concentration and flow patterns affected by constriction resistance at the electrode face are also presented.
机译:工件-电极接触表面或电极表面上的电阻对接头质量的影响是:在电阻点焊(RSW)期间,熔核形状,温度,冷却速率和溶质浓度是熔合区微观结构的特征,其特征是系统地调查。该模型考虑了电磁力,由于接合面和电极面的接触电阻而产生的热量以及工件中的体积电阻。由收缩和膜电阻的不同特征组成的接触电阻是硬度,温度,电极力和表面状况的函数。计算结果表明,熔核的生长和传输过程与电极表面的膜电阻无关。然而,电极表面处的压缩电阻的增加减少了熔核形成的开始时间,冷却速率以及轴向和径向传热,并增加了电极温度。如果控制电极表面压缩电阻的参数较高,则工件容易发生表面熔化。还显示了受电极表面压缩阻力影响的溶质浓度和流型。

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