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Hybrid Laser-mig Welding Of Aluminum Alloys: The Influence Of Shielding Gases

机译:铝合金混合激光迁移焊接:保护气体的影响

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In this paper, laser-GMAW hybrid welding technologies of light metals are investigated by focusing particularly on shielding gas related problems such as distribution on the welding zone, mixtures and flow. In particular, a Computational Fluid Dynamics (CFD) software was used with the aim to investigate the effect on gas distribution and contamination of the adoption of an isolation chamber surrounding the welding zone. In particular, the turbulent flow model adopted was a standard k-ε one. A simple parallelepipedal geometry for the isolation chamber was adopted whose width and depth were fixed, while the height was set as a variable. A simulation activity was carried out in order to evaluate the relationship among chamber height, flow rates and inlet angle inclinations. The simulated welding environment was simplified without considering the presence and the effect of the laser induced plasma plume and of the electric arc. The main results concern the influence of isolation chamber height, gas flow rate and gas inlet inclination on the shielding gas contamination and distribution in a zone near the heat sources-material interaction zone. These results underline that there are particular values of the chosen variables which optimize the gas distribution around the welding zone allowing to achieve an even and reliable shielding effect.
机译:在本文中,激光-GMAW轻金属混合焊接技术的研究主要集中在保护气体相关的问题上,例如焊接区域的分布,混合物和流动。尤其是,使用计算流体力学(CFD)软件来研究采用围绕焊接区域的隔离室对气体分布和污染的影响。特别地,采用的湍流模型是标准的k-ε模型。采用隔离室的简单平行六面体几何形状,其宽度和深度是固定的,而高度则设置为变量。为了评估腔室高度,流速和入口角度倾斜度之间的关系,进行了模拟活动。简化了模拟焊接环境,而无需考虑激光诱导的等离子体羽流和电弧的存在及其影响。主要结果涉及隔离室高度,气体流速和进气口倾斜度对热源-材料相互作用区域附近区域中保护气体污染和分布的影响。这些结果表明,所选择的变量具有特定的值,可以优化焊接区域周围的气体分布,从而实现均匀而可靠的屏蔽效果。

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