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Study on Microstructural and Mechanical Properties of an Al–Cu–Sn Alloy Wall Deposited by Double-Wire Arc Additive Manufacturing Process

机译:双丝电弧增材制造工艺沉积Al-Cu-Sn合金壁的组织与力学性能研究

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摘要

In this present study, single-wire and double-wire Al–Cu–Sn alloy walls were fabricated by an arc additive manufacturing process. The surface morphology, elemental composition, and microstructure were investigated by scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and transmission electron microscopy (TEM) techniques. The mechanical properties of both the single-wire and double-wire walls were studied by mechanical property testing. The results showed that the heat input of the double-wire wall was lower than that of the single-wire wall at the same wire feeding speed. The surface microstructure of the double-wire wall showed a more uniform surface than the single-wire wall. The grains of the double-wire wall were found to be isometric crystals in the as-deposited state. The phase of the double-wire wall was dispersed with a smaller grain size in the grain boundary. After T6 heat treatment, the phase of the double-wire wall was completely dissolved into the aluminum matrix, and a large amount of θ enhanced phases were precipitated with a phase spacing of about 15 nm. The mechanical properties of the double-wire wall were shown to have significantly improved performance, which further increased to 490 MPa, 420 MPa, and 12%, respectively. The transverse and longitudinal mechanical properties of the double-wire wall were consistent, and the fracture mode of both was ductile fracture.
机译:在本研究中,单线和双线Al–Cu–Sn合金壁是通过电弧增材制造工艺制造的。通过扫描电子显微镜(SEM),能量色散光谱(EDS)和透射电子显微镜(TEM)技术研究了表面形态,元素组成和微观结构。通过机械性能测试研究了单线和双线壁的机械性能。结果表明,在相同送丝速度下,双丝壁的热量输入低于单丝壁的热量输入。双丝壁的表面微观结构显示出比单丝壁更均匀的表面。发现双丝壁的晶粒在沉积状态下是等轴晶体。双丝壁的相以较小的晶粒尺寸分散在晶界中。在T6热处理之后,双丝壁的相完全溶解在铝基质中,并且以约15nm的相间隔沉淀出大量的θ增强相。双金属丝壁的机械性能显示出显着改善的性能,分别进一步提高到490 MPa,420 MPa和12%。双丝壁的横向和纵向力学性能是一致的,两者的断裂方式均为延性断裂。

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