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Microstructure homogenization of 2A14 aluminum alloy weld seam by ultrasonic irradiation in metal inert gas welding

机译:金属惰性气体焊接超声辐射2A14铝合金焊缝的微观结构均匀化

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摘要

The quality of welded joints is affected by microstructure heterogeneity of the weld seam. In this work, the microstructure homogenization of 2A14 aluminum alloy weld seam was achieved by adding ultrasonic irradiation in the metal-inert gas welding (U-MIG). Compared with the traditional MIG, the width and penetration of the weld seam in the U-MIG increased by 1 mm and 1.7 mm, respectively. Ultrasonic cavitation was the main reason for the microstructure homogenization of the weld seam. The columnar grains near the fusion line in the conventional MIG were completely transformed into the equiaxed grains under the action of ultrasonic irradiation. The size of equiaxed grains was more refined than that of the initial columnar grains.
机译:焊接接头的质量受焊缝微观结构异质性的影响。 在这项工作中,通过在金属惰性气体焊接(U-MIG)中增加超声波照射来实现2A14铝合金焊缝的微观结构均匀化。 与传统的MIG相比,U-MIG中焊缝的宽度和渗透分别增加1mm和1.7mm。 超声波空化是焊缝微观结构均匀化的主要原因。 在超声波照射的作用下,常规MIG中融合线附近的柱状晶粒在超声波照射的作用下完全转化为等轴晶粒。 等轴晶粒的尺寸比初始柱状晶粒更精细。

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