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Effects of Filler Wires on the Microstructure and Mechanical Properties of 2195-T6 Al-Li Alloy Spray Formed by TIG Welding

机译:填充焊丝对TIG焊接形成的2195-T6铝锂合金喷镀组织和力学性能的影响

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摘要

The main purpose of this work was to investigate the microstructure and mechanical properties of spray-formed 2195-T6 Al-Li alloy welding joints produced by tungsten inert gas (TIG) with Al-Cu and Al-Si-Cu filler wires, so that they can be better used in space vehicle tanks. The porosity analysis indicates that the porosity area of the weld seam with the Al-Si-Cu filler wire is approximately 7.989 times larger than that of the Al-Cu filler wire. Furthermore, the microstructure and microhardness results indicate that the Al/Cu eutectic near the fusion line distributes more at the grain boundaries, while more dispersed Al Cu phase is found inside the grain, which improves the strength of the joint when using Al-Cu filler wire. However, when using the Al-Si-Cu filler wire, more Si, Cu, and Ti elements are segregated at the grain boundaries, forming a brittle-hard network Al/Cu/Ti eutectic, which reduces the performance of the joint. Additionally, the tensile strength and elongation of the weld joint are about 68.6% and 89.9% of the base metal (BM) when using the Al-Cu filler wire, and can approach the level of friction stir welding (FSW). However, the tensile strength and elongation are only about 56.8% and 39.9%, respectively, of the BM in the weld joint when using the Al-Si-Cu filler wire. Lastly, the fractures both occur on the fusion line and the fracture morphology of the weld joint shows that it is a mixed fracture mode dominated by plastic fracture when using Al-Cu filler wire, while it is mainly a quasi-cleavage fracture mode when using Al-Si-Cu filler wire. Therefore, the joint strength when using Al-Si-Cu filler wire with high strength matching is not as good as that of Al-Cu filler wire with low strength matching.
机译:这项工作的主要目的是研究由钨极惰性气体(TIG)与Al-Cu和Al-Si-Cu填充焊丝形成的2195-T6 Al-Li合金喷塑焊接接头的组织和力学性能,以便它们可以更好地用于航天器坦克。孔隙率分析表明,具有Al-Si-Cu填充焊丝的焊缝的孔隙面积大约是Al-Cu填充焊丝的焊缝面积的7.989倍。此外,显微组织和显微硬度结果表明,熔合线附近的Al / Cu共晶在晶界处分布更多,而在晶粒内部发现Al Cu相分布更加分散,这提高了使用Al-Cu填料时接头的强度。线。但是,当使用Al-Si-Cu填充焊丝时,更多的Si,Cu和Ti元素在晶界偏析,形成脆硬网络Al / Cu / Ti共晶,从而降低了接头的性能。此外,使用Al-Cu填充焊丝时,焊接接头的抗拉强度和伸长率约为母材(BM)的68.6%和89.9%,并且可以达到搅拌摩擦焊(FSW)的水平。然而,当使用Al-Si-Cu填充焊丝时,抗拉强度和伸长率分别仅为焊接接头中BM的约56.8%和39.9%。最后,断裂都发生在熔合线上,并且焊接接头的断裂形态表明,在使用Al-Cu填充焊丝时,这是一种以塑性断裂为主的混合断裂方式,而在使用时,其主要是准断裂断裂方式。 Al-Si-Cu填充焊丝。因此,使用强度匹配高的Al-Si-Cu填充线时的接合强度不如强度匹配低的Al-Cu填充线时的接合强度差。

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