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Numerical prediction of fusion zone and heat affected zone in hybrid Yb: YAG laser + GMAW welding process with experimental verification

机译:杂交YB中融合区和热影响区的数值预测:YAG激光+ GMAW焊接过程与实验验证

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摘要

This work concerns mathematical and numerical modelling of temperature field during hybrid welding process using Yb.YAG laser and electric arc in GMAW method. Numerical analysis is performed taking into account the motion of liquid steel in the fusion zone. Yb:YAG laser power distribution is determined on the basis of experimental research made on TruDisk 12002 laser. Geostatistical Kriging method is used in the interpolation of Yb:YAG laser power intensity distribution. Temperature field and melted material velocity field in the fusion zone of hybrid welded sheets made of S355 steel are obtained on the basis of numerical solution of continuum mechanics equations in Chorin's projection method and finite volume method. Experimental research of laser beam profile is performed in order to verify the correctness of developed heat source model. Fusion zone and heat affected zone geometry is predicted on the basis of calculated temperature field in the cross section of hybrid welded joint.
机译:这种工作涉及混合焊接过程中的温度场的数学和数值模型,使用YB.yAG激光和电弧在GMAW方法中。考虑熔融区中液钢的运动进行数值分析。 Yb:YAG激光配电是在Trudist 12002激光器的实验研究的基础上确定的。地统计克里格化方法用于YB的插值:YAG激光功率强度分布。基于Chorin投影方法的连续力学方程的数值解,获得了由S355钢制成的混合焊接薄片的温度场和熔化材料速度场。执行激光束轮廓的实验研究,以验证发育热源模型的正确性。在混合焊接接头的横截面中的计算温度场的基础上预测了融合区和热影响区域几何。

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