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首页> 外文期刊>Journal of Manufacturing Processes >Numerical and experimental investigation of thermal field and residual stress in laser-MIG hybrid welded NV E690 steel plates
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Numerical and experimental investigation of thermal field and residual stress in laser-MIG hybrid welded NV E690 steel plates

机译:激光-MIG混合焊接NV E690钢板的热场和残余应力的数值和实验研究

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摘要

A numerical simulation with sequential coupled thermal-mechanical finite element model has been performed for analyzing the temperature field, residual stresses and distortions in NV E690 weldment fabricated by hybrid laser-arc welding (HLAW). For the detailed validation of applicability of the proposed model, simulated and experimentally measured weld pool shape, residual stresses and distortions were compared. The comparison results showed that decent agreement was realized between the predicted weld pool dimension and measured weld bead geometry, suggesting the utility of the combined heat source model for predicting the transient temperature distribution during HLAW. Besides, the simulation results denoted that higher tensile stress distributed in the fusion zone and the surrounding heat affected zone. There was a qualitative agreement in terms of the numerical and experimental results of longitudinal stress and transverse stress. Additionally, the relative error of angular distortion between the experimental and numerical results was 28.18% and the absolute error value was 0.217. In addition, increasing the heat input increased the peak temperature, residual stresses, and distortions in the weldment. Comparison of the numerical and experimental results suggested that the developed model can be effectively used to estimate welding residual stresses and distortions in hybrid welded steel plates. What is more, the effect of welding thermal cycles on microstructure evolution of the weld bead was also evaluated.
机译:为了分析混合激光弧焊(HLAW)制成的NV E690焊件中的温度场,残余应力和变形,进行了顺序耦合热机械有限元模型的数值模拟。为了详细验证所提出模型的适用性,比较了模拟和实验测量的焊缝形状,残余应力和变形。比较结果表明,在预测的熔池尺寸和测得的焊缝几何形状之间实现了良好的一致性,这表明组合热源模型可用于预测HLAW的瞬态温度分布。此外,仿真结果表明,较高的拉伸应力分布在熔合区和周围的热影响区。在纵向应力和横向应力的数值和实验结果上有定性的一致。另外,实验和数值结果之间的角度畸变的相对误差为28.18%,绝对误差值为0.217。另外,增加热量输入会增加峰值温度,残余应力和焊件变形。数值和实验结果的比较表明,所开发的模型可以有效地用于估计混合焊接钢板中的焊接残余应力和变形。此外,还评估了焊接热循环对焊道组织演变的影响。

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