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Heat transfer and fluid flow in fusion type PA-GTA double-sided welding

机译:融合型PA-GTA双面焊接中的热传递和流体流动

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摘要

In comparison with conventional single-sided arc welding, double-sided arc welding powered by a single power supply has remarkable advantages in enhancing penetration, minimizing distortion and improving welding production. In this paper, a three-dimensional steady numerical model is developed for the heat transfer and fluid flow in a fusion type plasma arc (PA)-gas tungsten arc (GTA) double-sided welding process. Based on the numerical model, the distributions of the fluid flow and temperature field are calculated. Numerical results show that the peak temperature and temperature gradient in the weld pool in the PA side are higher than the values in the GTA side. Within the weld pool, the electromagnetic force drives the melted metal to move from two sides to the central part of the weld pool, and this effect is positive to penetrating the workpiece. The fluid flow of the melted metal in the free surface of the weld pool is fiercer than the flow within the weld pool, and the biggest flow velocity of the melted metal occurs in the free surface in the PA side. A comparison of the cross section of the weld bead with the experimental result shows that the numerical model's accuracy is reasonable.
机译:与传统的单面弧焊相比,由单电源供电的双面弧焊在提高熔深,最小化变形和提高焊接产量方面具有显着优势。本文建立了一个三维稳态数值模型,用于融合型等离子弧(PA)-气体钨极电弧(GTA)双面焊接过程中的传热和流体流动。在数值模型的基础上,计算了流体流场和温度场的分布。数值结果表明,PA侧焊缝池的峰值温度和温度梯度高于GTA侧焊缝的峰值温度和温度梯度。在焊池内部,电磁力驱动熔化的金属从两侧移到焊池的中心部分,这种作用对于穿透工件是积极的。熔池自由表面中熔融金属的流体流动比熔池内部流动更猛烈,熔融金属的最大流速出现在PA侧的自由表面中。将焊缝横截面与实验结果进行比较表明,数值模型的准确性是合理的。

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