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Corrosion Resistance of 2060 Aluminum–Lithium Alloy LBW Welds Filled with Al-5.6Cu Wire

机译:Al-5.6Cu丝填充的2060铝锂合金LBW焊缝的耐蚀性

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摘要

Alloy sheets of type 2060 aluminum–lithium were welded by laser beam welding (LBW) filled with ER2319 Al-5.6Cu wire. Microstructural observations showed the uneven distribution of columnar grains, equiaxed grains and equiaxed dendrite grains in the weld. The θ′(Al2Cu) phase and other phases precipitated in the weld. The θ′(Al2Cu) phase centrally distributed at the grain boundaries. During the immersion corrosion, the pitting corrosion first occurred and then gradually expanded and transformed to intergranular corrosion and exfoliation corrosion. The electrochemical corrosion test showed a higher corrosion tendency of the base metal and heat-affected zone for the lower corrosion potential, but the corrosion current density of the weld was relatively larger. The segregation of Cu, Mg and other elements at the grain boundary aggravated the occurrence of intergranular corrosion.
机译:通过填充ER2319 Al-5.6Cu焊丝的激光束焊接(LBW)焊接2060型铝-锂合金薄板。显微组织观察表明,焊缝中柱状晶粒,等轴晶粒和等轴枝晶晶粒分布不均匀。 θ'(Al2Cu)相及其他相在焊缝中析出。 θ'(Al2Cu)相集中分布在晶界处。在浸没腐蚀过程中,首先发生点蚀,然后逐渐膨胀并转变为晶间腐蚀和剥落腐蚀。电化学腐蚀试验表明,母材和热影响区的腐蚀趋势较高,腐蚀电位较低,但焊缝的腐蚀电流密度较大。 Cu,Mg等元素在晶界的偏析加剧了晶间腐蚀的发生。

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