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Numerical and Experimental Study on the Thermally Induced Residual Stresses Behavior in the Hybrid Laser/Arc Welding of Lap Joint

机译:搭接激光/电弧复合焊接中热诱导残余应力行为的数值和实验研究

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In this study, a three-dimensional (3D) finite element model is developed to investigate a thermally induced stress field during the laser welding and hybrid laser-gas tungsten arc welding (GTAW) process. In hybrid laser/arc welding, the focus on of this study is on the GTAW process sharing a common molten pool with a laser beam and playing an augmented role in the hybrid welding system. An experimentally-based thermal analysis is performed to obtain the temperature history, which then is applied to the mechanical (stress) analysis. The goal is to determine the optimal welding parameter set that yields the minimum stress concentration. A modified material model is used to consider the influence of face-to-face contact between the top and bottom metal sheets in the thermo-mechanical analysis. Results show that the normal stress components prevail in the weld, and maximum thermal-stress exceeding the yield point of the material exists at the heat affected zone (HAZ). However, the stress concentration in the weld is obviously reduced with laser welding augmented by a GTAW arc. In addition, a series of experiments are performed to validate the numerical results, and a qualitative agreement is achieved.
机译:在这项研究中,建立了三维(3D)有限元模型,以研究激光焊接和激光-气体-钨极气体保护弧焊(GTAW)混合过程中的热应力场。在混合激光/电弧焊接中,本研究的重点是GTAW工艺与激光束共享一个公共熔池,并在混合焊接系统中发挥更大的作用。执行基于实验的热分析以获得温度历史记录,然后将其应用于机械(应力)分析。目的是确定产生最小应力集中的最佳焊接参数集。修改后的材料模型用于在热机械分析中考虑顶部和底部金属板之间的面对面接触的影响。结果表明,在焊缝中存在法向应力分量,并且在热影响区(HAZ)处存在超过材料屈服点的最大热应力。但是,通过GTAW电弧增强的激光焊接明显降低了焊缝中的应力集中。此外,进行了一系列实验以验证数值结果,并获得了定性的一致性。

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