Comparative Study on the Microstructure Evaluation of Al-Mg (Er5356) Aluminum Alloy for Aircraft Wing Stiffener Fabricated By Wire Arc Additive Manufacturing

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Abstract

Wire +Arc additive manufacturing (WAAM) is a type of additive manufacturing process in which layer upon layer is added to form a closely welded component. In this study, Gas Metal Arc Welding - Pulse (GMAW-P) and Gas Metal Arc Welding - Double Pulse (GMAW-DP) methods were used to manufacture the components with 5356 Aluminum alloy. Microstructures of the GMAW-P and GMAW-DP were observed and compared, the results show that the bead formation, Structure, formability and continuity appeared to be better on the GMAW-DP welding when compared to GMAW-P. The pore formations were found in larger numbers in GMAW-P than GMAW-DP. Due to the presence of a larger number of pores in GMAW-P, it is weaker than GMAW-DP.
电弧增材制造飞机机翼加强板Al-Mg (Er5356)铝合金组织评价的比较研究
线+电弧增材制造(WAAM)是一种增材制造工艺,一层一层地添加,形成紧密焊接的组件。本研究采用脉冲气体保护焊(GMAW-P)和双脉冲气体保护焊(GMAW-DP)两种方法制备了5356铝合金零件。对GMAW-P和GMAW-DP的微观组织进行了观察和比较,结果表明,GMAW-DP焊接的焊缝形成、组织、成形性和连续性均优于GMAW-P。GMAW-P的孔隙数量大于GMAW-DP。由于GMAW-P中存在较多的孔隙,所以比GMAW-DP弱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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