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Fabrication and Mechanical Properties of Tungsten Inert Gas Welding Ring Welded Joint of 7A05-T6/5A06-O Dissimilar Aluminum Alloy

机译:钨惰性气体焊接环焊接接头的制造和力学性能,7A05-T6 / 5A06-O不同铝合金

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摘要

In this paper, Tungsten Inert Gas Welding (TIG) and single-sided welding and double-sided forming have been used to weld the 7A05-T6/5A06-O dissimilar aluminum alloy circular welded joint of a ring-stiffened closed cylindrical sandwich shell. Microstructural characterization and mechanical properties of welded joints were investigated by use of scanning electron microscopy (SEM), backscatter electron diffraction (EBSD) and transmission electron microscopy (TEM), respectively. Hardness distribution and tensile properties of the welded joints were examined. The results showed the failure of the welded joints produced in the fusion zone (FZ). The tensile strength and yield strength of the welded joints were, respectively, 78.87% and 97.24% of the 5A06-O base metal (BM), and the elongation reached 84.29% of 7A05-T6 base metal. Welding high heat input led to the coarse grain size in the fusion zone, and the long-term similar quenching effect can lead to the full dissolution of the strengthening zone of the fusion zone resulting in the reductions of strength and hardness. Around 7A05 heat-affected zone (HAZ), there is an obvious hardening zone and softening zone, the solid solution precipitates into the Rayleigh brilliant η′ (MgZn2) phase, which results in natural aging strengthening, thus obtaining high hardness. η′ (MgZn2) enhanced phase dissolved fully and the dislocation density decreased rapidly in the HAZ region resulted in a softening zone with a lower hardness at about (10–18) mm from the center of the weld center.
机译:在本文中,钨极惰性气体焊接(TIG)和单面焊接和双面成形已用于焊接7A05-T6 / 5A06-O异种铝合金环肋封闭圆管壳的圆形焊接接头。微观结构的表征和焊接接头的机械性能通过使用扫描电子显微镜(SEM)研究,背散射电子衍射(EBSD)和透射电子显微镜(TEM),分别。焊接接头的硬度分布和拉伸性能进行了检查。结果表明:在熔合区(FZ)中产生的焊接接头的故障。焊接接头的拉伸强度和屈服强度分别为78.87%和5A06-O基体金属(BM)的97.24%,延伸率达到7A05-T6贱金属的84.29%。焊接导致熔融部的粒度较粗,且长期相似猝灭效应高热量输入可导致导致强度和硬度的降低熔融部的加强区的完全溶解。围绕7A05热影响区(HAZ),有一个明显的硬化区和软化区,所述固溶体的析出物进瑞利辉煌η'(MgZn 2的)相,其结果在自然时效强化,从而获得高的硬度。 η'(MgZn 2的)增强相完全溶解,位错密度从焊接中心的中心迅速在HAZ区降低导致具有较低硬度的软化区域在约(10-18)毫米。

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