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Modeling and Experimental Research on Resistance Spot Welded Joints for Dual-Phase Steel

机译:双相钢电阻点焊接头的建模与实验研究

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摘要

Dual-phase steel has been employed in the automotive industry as it has the advantages of high strength, satisfying ductility, low yield ratio, and so on. A novel framework for the weld nugget size prediction and control using finite element modeling and experimental research was proposed in this paper. The two-dimensional axisymmetric numerical analysis model was established and the phase transition on thermal expansion coefficient was taken into account. The whole welding process was simulated and discussed using thermal elastic-plastic theory. To validate the predictive methods of developed weld nugget size and confirmation experiments were implemented with the same input parameters in the ranges of process parameters. The simulated weld nugget sizes were in good agreement with the experimental results except for extreme welding conditions. The microstructure of the welding zone was also investigated based on metallographic experiments and temperature field analysis. The welding parameters were adjusted using the model proposed in this paper so as to obtain the nugget size with pull out failure mode.
机译:双相钢由于具有强度高,延展性好,屈服比低等优点而被用于汽车工业。提出了一种基于有限元建模和实验研究的熔核大小预测与控制的新框架。建立了二维轴对称数值分析模型,并考虑了热膨胀系数的相变。使用热弹塑性理论对整个焊接过程进行了仿真和讨论。为了验证焊缝熔核尺寸的预测方法,并在工艺参数范围内使用相同的输入参数进行了确认实验。除了极端的焊接条件外,模拟的熔核大小与实验结果吻合良好。还根据金相实验和温度场分析研究了焊接区的显微组织。使用本文提出的模型对焊接参数进行调整,从而获得具有拉出破坏模式的熔核尺寸。

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