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Microstructure and mechanical properties of laser-MIG hybrid welding of 1420 Al-Li alloy

机译:1420 Al-Li合金的激光-MIG混合焊接的组织和力学性能

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This paper investigates the microstructure and mechanical properties of 1420 aluminum-lithium (Al-Li) alloy joints before and after heat treatment by CO_2 laser-metal inter gas (MIG) hybrid welding. The 5-mm-thick 1420 Al-Li alloy plates were welded by CO_2 laser-MIG hybrid welding. Full penetration joints without any defects were produced. Optic and scanning electron microscopy were used to study the microstructure and fractograph characteristics. The results show that the microstructures of the heat-affected zone (HAZ) and fusion zone exist as a predominantly discontinuous equiaxed dendritic structure and as a fine cellular dendritic structure, respectively. After heat treatment, the microstructures change from dendritic structure to a spheroidal crystal; the grain size of fusion zone is obviously larger than that of the base metal and the HAZ. Furthermore, the hardness recovers substantially to a level similar to that of the parent material. The tensile strengths of the joints in the as-welded condition and after heat treatment are 223 and 267 MPa, reaching up to 57 and 68% of the parent materials' strength, respectively. The fractographs show that the joint as-welded condition exhibits the characteristics of dominated dimples and a small amount tear ridges, which are associated with the mixed ductile and brittle facture mechanisms. The fracture mode transforms from a transgranular to an intergranular after heat treatment; cleavage cracking coupled with an intergranular microvoid coalescence fracture mechanism occurs.
机译:本文研究了1420铝锂(Al-Li)合金接头在CO_2激光金属间气体(MIG)混合焊接热处理前后的组织和力学性能。 5毫米厚的1420铝锂合金板通过CO_2激光-MIG混合焊接进行焊接。产生了没有任何缺陷的全穿透接头。用光学和扫描电子显微镜研究了显微组织和断口形貌。结果表明,热影响区(HAZ)和熔合区的微观结构分别以主要不连续的等轴树状结构和细小的细胞树状结构存在。热处理后,微观结构从树状结构变为球状晶体。熔合区的晶粒尺寸明显大于母材和热影响区。此外,硬度基本上恢复到与母材相似的水平。焊接后和热处理后的接头抗拉强度分别为223和267 MPa,分别达到母材强度的57%和68%。断裂图表明,焊接后的状态表现出支配凹痕和少量撕裂脊的特征,这与混合的韧性和脆性断裂机理有关。热处理后,断裂模式由晶间转变为晶间。发生裂解开裂,并发生晶间微孔聚结断裂机制。

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