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February 16, 20263 citationsOpen Access

Welding of Advanced Aluminum–Lithium Alloys: Weldability, Processing Technologies, and Grain Structure Control

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QLQi LiQWQiman WangYXYangyang Xu

Key Points

  • This review examines the welding challenges and microstructural control in aluminum–lithium alloys.
  • Overview of weldability and processing technologies in Al-Li alloys
  • Comparison of major welding processes including laser, arc, and hybrid techniques
  • Examination of microstructural formation mechanisms like equiaxed grain zones and columnar grains
  • Analysis of strategies for microstructural control such as heterogeneous nucleation and dendrite fragmentation
  • Highlights the unique microstructural features affecting mechanical performance
  • Identifies effective grain refinement strategies for improved weld quality
  • Discusses the advantages and limitations of various welding processes

Abstract

Aluminum–lithium (Al-Li) alloys are extensively employed in aerospace and space structures because of their low density, high specific stiffness, and excellent fatigue resistance. However, welding of these alloys remains challenging, since the joints typically exhibit unique microstructural features, including equiaxed grain zones (EQZ) along the fusion boundary and coarse columnar grains in the fusion zone, which degrade mechanical performance and increase susceptibility to cracking. This review provides an overview of the generational evolution of Al-Li alloys and their associated weldability, highlights the advantages and limitations of major welding processes, such as laser, arc, and hybrid techniques, and systematically examines the formation mechanisms of EQZ, columnar grains, and equiaxed grain bands. Various strategies for microstructural control are compared, including filler design, pulsed current, and external-field-assisted welding. Special attention is given to grain refinement achieved through heterogeneous nucleation, dendrite fragmentation, and columnar-to-equiaxed transition. Finally, prospects for advanced microstructural control strategies are discussed, with the goal of achieving high-quality welds for next-generation lightweight structural applications.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69926552eb1f82dc367a1388https://doi.org/10.3390/ma19040738
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