论文标题

凹槽形状对气体金属弧焊中熔融金属流动行为的影响

The Effect of Groove Shape on Molten Metal Flow Behaviour in Gas Metal Arc Welding

论文作者

Ebrahimi, Amin, Babu, Aravind, Kleijn, Chris R., Hermans, Marcel J. M., Richardson, Ian M.

论文摘要

开发,资格和优化弧焊接过程的挑战之一在于表征复杂的熔体行为,该行为表现出对过程参数变化的高度非线性响应。目前的工作提出了一种基于模拟的方法,以描述根通气金属弧焊接(GMAW)中的熔体池行为。已经使用基于物理学的计算模型进行了三维数值模拟,以揭示凹槽形状对GMAW中复杂的非稳态热和流体流动的影响。考虑到表面变形对功率密度分布的影响以及施加到熔融材料的力的影响。利用该模型,对熔体池中的复杂热和流体流进行了可视化,并针对不同的凹槽形状进行了描述。此外,还进行了实验以验证数值预测,并证明了本计算模型的鲁棒性。该模型可用于探索在气体金属弧根焊接过程中处理流体流量和融化池稳定性的物理效应。

One of the challenges for development, qualification and optimisation of arc welding processes lies in characterising the complex melt-pool behaviour which exhibits highly non-linear responses to variations of process parameters. The present work presents a simulation-based approach to describe the melt-pool behaviour in root-pass gas metal arc welding (GMAW). Three-dimensional numerical simulations have been performed using an enhanced physics-based computational model to unravel the effect of groove shape on complex unsteady heat and fluid flow in GMAW. The influence of surface deformations on power-density distribution and the forces applied to the molten material was taken into account. Utilising this model, the complex heat and fluid flow in melt pools were visualised and described for different groove shapes. Additionally, experiments were performed to validate the numerical predictions and the robustness of the present computational model is demonstrated. The model can be used to explore physical effects of governing fluid flow and melt-pool stability during gas metal arc root welding.

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