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Effect of Marangoni convection on welding pool of plasma direct metal forming finite element model

机译:Marangoni对流对等离子直接金属成形有限元模型焊接池的影响

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With considering the Marangoni convection in the molten pool on plasma direct metal forming process, a finite element model posed to describe and reflect the flow in the molten pool. Results of temperature distribution modeling prepared by plasma direct metal forming process of metal powders in an Ar environment were numerically obtained and compared with experimental data. Powders of Fe314 and base plates of R235 steel were taken as sample materials. In the experiment a multi-stream nozzle capable of delivering metal powder coaxially with the plasma arc was used. The model revealed that the velosity of the front part of the pool is a little slower than aft part. Marangoni convection reinforced the convection and enhanced the heat transfer. Profile of the model is the same as the experimental data. This allows us to conclude that the model can be applied for preselecting the process parameters.
机译:考虑到等离子体直接金属成形过程中熔池中的Marangoni对流,提出了一个有限元模型来描述和反映熔池中的流动。数值获得了在Ar环境中通过金属粉末的等离子直接金属成型工艺制备的温度分布模型的结果,并将其与实验数据进行了比较。将Fe314粉末和R235钢的基板用作样品材料。在实验中,使用了能够与等离子弧同轴地输送金属粉末的多流喷嘴。模型显示池前部分的流速比船尾部分慢一些。 Marangoni对流增强了对流并增强了热传递。模型的轮廓与实验数据相同。这使我们可以得出结论,该模型可以用于预先选择过程参数。

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