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Gas tungsten arc welding and hybrid laser-TIG welding temperature field analysis of AZ31B magnesium alloy

机译:AZ31B镁合金的钨极氩弧焊与混合激光-TIG焊接温度场分析

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In this particular work, the moving Gauss heat source model based on the gas tungsten arc welding and a new heat source model based on the laser-TIG hybrid welding were developed by the finite element analysis according to the physical characteristic of the TIG welding and the laser-TIG hybrid welding, Taking into account the advice of parameter modification, the modeling was respectively carried out by the single TIG and the laser-TIG hybrid welding for AZ31B magnesium alloy. The welding temperature field and the weld cross-section geometry were simulated separately with regard to dependence on the single TIG and the laser-TIG hybrid welding. Comparing the experimentally measured value with simulated value of the weld section geometry, the simulated and the experimentally determined weld section geometry by the single TIG welding and the hybrid welding showed a good agreement, at the same time, the microstructures of the joint were also discussed respectively.
机译:在这项特殊的工作中,根据TIG焊接的物理特性和焊接的物理特性,通过有限元分析,开发了基于气体钨极电弧焊的移动高斯热源模型和基于激光-TIG混合焊的新热源模型。激光-TIG混合焊接,考虑到参数修改的建议,分别对AZ31B镁合金进行了单TIG和激光-TIG混合焊接的建模。根据对单个TIG和激光-TIG混合焊接的依赖性,分别模拟了焊接温度场和焊接截面几何形状。将实验测量值与焊缝几何形状的模拟值进行比较,通过单TIG焊和混合焊进行模拟和实验确定的焊缝几何形状显示出良好的一致性,同时,还讨论了接头的微观结构分别。

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