材料科学
晶界
腐蚀
冶金
激光器
晶体孪晶
工程物理
微观结构
光学
物理
工程类
作者
Chunfeng Ma,Wei Jin,Qi‐Chuan Jiang,Qinglong Zhao
标识
DOI:10.1080/21663831.2025.2527821
摘要
Breaking the strength-corrosion tradeoff in fine-grained Al alloys remains elusive due to incompatible grain boundary requirements. We report laser-melting-induced hierarchical fine twin architecture where coherent twin boundaries (spacing ∼3 µm) simultaneously enhance hardness (14% higher) and corrosion resistance (85% lower corrosion depth). The twin boundaries containing stacking faults, unlike conventional high-angle grain boundaries, demonstrate remarkable stability against second-phase precipitation during prolonged thermal exposure. This work presents a new paradigm for laser additive manufacturing and laser welding of damage-tolerant alloys to implement twin-related grain boundary engineering, transcending traditional composition-dependent approaches.
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