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Microstructure Characteristics Of Laser-mig Hybrid Welded Mild Steel

机译:激光迁移混合低碳钢的组织特征

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To deepen the understanding of laser-arc hybrid welding, the weld shape and microstructure characteristics of laser-metal inert gas hybrid welded mild steel were analyzed. The results showed typical hybrid weld could be classified as two parts: the wide upper zone and the narrow nether zone, which were defined as arc zone and laser zone, respectively. In the hybrid weld, the microstructure, alloy element distribution and microhardness all have evident difference between laser zone and arc zone. The microstructure of arc zone consists of coarse columnar dendrite and fine acicular dendrite between the columnar dendrites, but that of laser zone is composed of fine equiaxed dendrite in weld center and columnar dendrite around the equiaxed dendrite. Compared to arc zone, laser zone has finer grain size, higher microhardness, smaller alloy element content in the fusion zone and narrower heat affected zone. The discussions demonstrated that the observed difference was caused by the difference of temperature gradient, crystallizing and the effects of arc pressure on the molten pool between laser zone and arc zone.
机译:为了加深对激光电弧混合焊接的理解,分析了激光金属惰性气体混合焊接低碳钢的焊缝形状和组织特征。结果表明,典型的混合焊缝可分为两部分:上部宽和下部窄,分别定义为电弧区和激光区。在混合焊缝中,激光区和电弧区之间的组织,合金元素分布和显微硬度都有明显的差异。电弧区的显微组织由粗大的柱状枝晶和柱状枝晶之间的细针状枝晶组成,而激光区的显微组织由焊缝中心的细等轴枝晶和等轴枝晶周围的柱状枝晶组成。与电弧区相比,激光区具有更细的晶粒尺寸,更高的显微硬度,熔合区中合金元素的含量更少以及热影响区更窄。讨论表明,观察到的差异是由温度梯度,结晶的差异以及电弧压力对激光区和电弧区之间的熔池的影响所引起的。

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