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首页> 外文期刊>Journal of Materials Processing Technology >Stirring effect of the rotating arc on the molten pool during non- axisymmetric tungsten NG-GTAW
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Stirring effect of the rotating arc on the molten pool during non- axisymmetric tungsten NG-GTAW

机译:旋转弧形在非轴对称钨钨期间旋转弧的搅拌作用

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摘要

The stirring effect of the rotating arc during non-axisymmetric tungsten narrow-gap GTAW (NT-NG-GTAW) on the molten pool is investigated. Tracer particles are embedded in the groove and plate metal surface, respectively. During welding, the floating tracer particles are captured with a high-speed camera to reflect the flow characteristics of the liquid metal. Compared with conventional GTAW processes, mechanical force (Fc) and inertial centrifugal force (Fl) in NT-NG-GTAW have more significant effect on the molten pool. They are the main driving forces to change the flow pattern of the molten pool under the rotating arc. As the arc rotate to the boundary of the molten pool, liquid metal layer on molten pool surface forms a vortex at the other edge to impact on the sidewall. When the arc rotates clockwise, the molten pool in bead-on-plate rotates counter-clockwise, whereas the molten pool in the narrow gap rotates clockwise with the same rotation frequency as the arc.
机译:研究了旋转弧期间熔池上的非轴对称钨窄间隙GTAW(NT-NG-GTAW)的搅拌效果。 示踪剂颗粒分别嵌入凹槽和板金属表面中。 在焊接期间,用高速相机捕获浮动示踪剂颗粒以反映液态金属的流动特性。 与传统的GTAW工艺相比,NT-NG-GTAA的机械力(Fc)和惯性离心力(FL)对熔池具有更大的影响。 它们是改变旋转弧下熔池的流动模式的主要驱动力。 当电弧旋转到熔池的边界时,熔池表面上的液态金属层在另一个边缘形成涡流以冲击侧壁。 当电弧顺时针旋转时,胎圈板中的熔池逆时针旋转,而窄间隙中的熔池顺时针旋转,与电弧相同的旋转频率。

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