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May 8, 2026Journal of Magnesium and Alloys4 citationsOpen Access

Recent progress in wire arc additive manufacturing of magnesium alloys

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LMLiming MouJilin UniversityHCH. F. ChenJilin UniversityCLChuang LiJilin University

Key Points

  • The aim is to consolidate understanding of wire arc additive manufacturing (WAAM) for magnesium alloys, focusing on microstructure and mechanical properties.
  • Systematically summarized the effects of process parameters on microstructure and mechanical properties of WAAM-Mg alloys.
  • Discussed corrosion behavior and proposed optimization strategies for balancing strength and ductility.
  • Identified current challenges and outlined future directions for research in WAAM-Mg alloys.
  • Corrosion behavior and microstructure were significantly affected by varying process parameters.
  • Optimal strategies were identified to improve both strength and ductility of WAAM-Mg alloys.
  • Challenges such as process control and material performance were revealed, guiding future research.

Abstract

• The effect of process parameters on microstructure and mechanical properties are systematically summarized. • Strengthening mechanism and unique corrosion behavior of WAAM-Mg alloys are discussed. • Optimization strategies are proposed to balance strength and ductility of WAAM-Mg alloys. • Current challenges of WAAM-Mg alloys are revealed, and future research directions are proposed. Wire arc additive manufacturing (WAAM) has emerged as a promising technique for processing magnesium (Mg) alloys, offering advantages such as near-net-shape forming, high deposition efficiency, and the ability to fabricate complex geometries. The growing demand for lightweight materials in aerospace and defense applications has further fueled the integration of WAAM with Mg alloys, known for their exceptional specific strength. This combination not only enhances design flexibility but also overcomes the limitations of traditional manufacturing methods, accelerating industrial adoption. This review consolidates the current understanding of WAAM-fabricated Mg alloys, focusing on key aspects such as arc heat source classifications, the relationship between process parameters and deposition characteristics, and microstructural strategies to achieve an optimal strength-ductility balance. We also explore the underlying mechanisms influencing mechanical performance and corrosion resistance. Finally, the review summarizes existing challenges and proposes promising research directions to promote the application of WAAM-processed Mg alloys in various industries.

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Cite This Study

Mou et al. (2026) studied this question.

synapsesocial.com/papers/69fd7d94bfa21ec5bbf05f9chttps://doi.org/10.1016/j.jma.2026.102071
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