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Letter | Open Access

Achieving excellent strength-ductility synergy of wire-arc additive manufactured Mg-Gd-Y-Zr alloy via friction stir processing

Wenzhe YangaKuitong YangaHaiou Yanga( )Zihong WangbChenghui HucXin Lina( )
State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi’an 710072, China
College of Materials Science and Engineering, Chongqing University, Chongqing 400045, China
Luoyang Ship Material Research Institute, Luoyang 471023, China

Peer review under responsibility of Chongqing University.

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Abstract

Friction stir processing (FSP) was applied to wire-arc additively manufactured (WAAM) Mg-9.54Gd-1.82Y-0.44Zr (GW92K) alloy to address coarse microstructure and porosity defects inherent to layer-by-layer deposition. FSP induced complete dissolution of the coarse Mg5(Gd,Y) eutectic network (initial size: 3.3 ± 0.5 µm) and triggered dynamic recrystallization, achieving a 69.5% grain refinement from 16.4 µm (WAAMed) to 5.0 µm (FSPed). This microstructural transformation enhanced ultimate tensile strength (UTS) by 32% (217 ± 3 MPa → 286 ± 2 MPa), yield strength (YS) by 46% (124 ± 2 MPa → 182 ± 7 MPa), and elongation (EL) by 35% (9.7 ± 1.1% → 13.1 ± 1.4%). Quantitative analysis via Hall-Petch relationship confirmed that grain refinement contributed ~50 MPa (79%) of the total YS increment, while nano-precipitation (β′′/β′ phases <20 nm) effects accounted for the remaining ~13 MPa. The simultaneous strength-ductility enhancement originates from FSP-induced defect elimination (porosity reduction: 1.75% → 0.18%) and dual-phase grain boundary pinning by Zr particles and β-Mg5(Gd,Y) precipitates. These findings establish FSP as a viable post-treatment for overcoming WAAM limitations in high-performance Mg-RE alloy fabrication.

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Journal of Magnesium and Alloys
Pages 2500-2508

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Cite this article:
Yang W, Yang K, Yang H, et al. Achieving excellent strength-ductility synergy of wire-arc additive manufactured Mg-Gd-Y-Zr alloy via friction stir processing. Journal of Magnesium and Alloys, 2025, 13(6): 2500-2508. https://doi.org/10.1016/j.jma.2025.03.029

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Received: 05 January 2025
Revised: 11 March 2025
Accepted: 31 March 2025
Published: 25 April 2025
© 2025 Chongqing University

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)