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Influence of Alloy and Solidification Parameters on Grain Refinement in Aluminum Weld Metal due to Inoculation

机译:孕育合金和凝固参数对铝焊缝晶粒细化的影响

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Refinement of the weld metal grain structure can improve the mechanical properties of the weld and decrease the susceptibility to solidification cracking of the weld metal. In this study, commercial Al Ti5B1 grain refiner was used to refine the microstructure of LB (laser beam) and GTA (gas tungsten arc) aluminum welds by inoculation. The grain refiner additions led to a significant decrease in the weld metal mean grain size whereby a transition from columnar to equiaxed grain structure (Columnar to Equiaxed Transition, CET) was observed. The development of both grain size and shape depended upon the base metal (Al alloys 1050A, 5083 and 6082) and upon the welding process. The GTA welding process allowed a more pronounced and a more efficient refinement than in LB welds. Furthermore, the influence of the solidification conditions on the CET was investigated through temperature measurements in the weld metal. The temperature profiles revealed a faster solidification of LB welds than in GTA welds. The results from the temperature measurements were also used to estimate (according to an existing model) the critical thermal gradient at which the CET occurs.
机译:细化焊缝金属晶粒结构可以改善焊缝的机械性能并降低焊缝金属的凝固裂纹敏感性。在这项研究中,使用商业化的Al Ti5B1晶粒细化剂通过接种来细化LB(激光束)和GTA(气体钨极电弧)铝焊缝的组织。晶粒细化剂的添加导致焊接金属平均晶粒尺寸显着减小,从而观察到从柱状到等轴晶组织的转变(柱状到等轴晶转变,CET)。晶粒尺寸和形状的发展取决于母材(铝合金1050A,5083和6082)和焊接工艺。与LB焊接相比,GTA焊接工艺可实现更明显,更有效的改进。此外,通过焊接金属中的温度测量研究了固化条件对CET的影响。温度曲线表明,LB焊缝的凝固速度比GTA焊缝的凝固速度快。温度测量的结果还被用于(根据现有模型)估计发生CET的临界热梯度。

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