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Numerical simulation of flow field in the Invar alloy laser-MIG hybrid welding pool based on different heat source models

机译:不同热源模型的殷钢合金-MIG混合焊池流场的数值模拟

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Purpose - The purpose of this paper is to establish a three-dimensional flow field model of the Invar alloy laser-metal inert gas (laser-MIG) hybrid welding process to investigate the influence of different heat sources between different layers and to analyze the flow field based on the two different heat source models for the multilayer welding. Design/methodology/approach - The Invar steel plates with 19.5 mm thickness are welded into three layers' seam using the hybrid laser-MIG welding technology. The flow field based on different heat source models is studied and then used to investigate the influence of different heat sources in different layers during the laser-MIG hybrid welding process. The simulation results of flow field using two different heat source models are compared with experiments. Findings - The flow field simulations results show that using the Gaussian rotating body heat source model to simulate the temperature field is more consistent with the experiment of the hybrid laser-MIG welding where its flow field between different layers better reflects the characteristics of the hybrid laser-MIG welding. Originality/value - The findings will be useful in the study of a variety of thick-plate laser-MG hybrid welding process fluid flows.
机译:目的-本文的目的是建立因瓦合金激光-金属惰性气体(激光-MIG)混合焊接工艺的三维流场模型,以研究不同层之间不同热源的影响并分析其流动。基于两种不同热源模型的多层焊接领域。设计/方法/方法-使用混合激光-MIG焊接技术将19.5毫米厚的殷钢钢板焊接成三层接缝。研究了基于不同热源模型的流场,然后研究了激光-MIG混合焊接过程中不同层上不同热源的影响。将两种不同热源模型对流场的模拟结果与实验进行了比较。研究结果-流场模拟结果表明,使用高斯旋转体热源模型来模拟温度场与混合激光-MIG焊接的实验更加吻合,在混合激光-MIG焊接中其不同层之间的流场更好地反映了混合激光的特性-MIG焊接。原创性/价值-这些发现将对研究厚板激光-MG混合焊接工艺流体的流动很有用。

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