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Annealing-induced strengthening in hetero-structured Mg alloy laminates with gradient Al content

作者:Xiang Chen, Yuhao Liu, Qiuyue Shi, Junlei Zhang, Chao He, Qi Zhao, Shuo Wang, Yifu Shen, Shuping Tan, Lifei Wang · 发表于:Journal of Magnesium and Alloys · 年份:2025 · DOI:10.1016/j.jma.2025.09.019 · 被引用次数:7 · 研究领域:Magnesium Alloys: Properties and Applications、Metal and Thin Film Mechanics、Microstructure and mechanical properties

• Five-layer Mg alloy laminate with Al gradient was created via extrusion and short-term annealing. • Short-term annealing significantly strengthened the Mg alloy laminate. • Annealing-induced synergistic strengthening mechanisms were revealed. This study developed a five-layer Mg alloy laminate (pure Mg/AZ31/AZ91/AZ31/ pure Mg) through an innovative synergistic strategy involving Al-element gradient design, extrusion, and short-term annealing. Microstructural characterization revealed hierarchical heterogeneities in grain size, texture intensity, dislocation density, and precipitated phases, accompanied by the formation of annealing twinning in pure Mg layer—a phenomenon rarely documented in Mg alloys. Mechanical tests demonstrated significant strengthening effects in all annealed samples, particularly in the 300 °C/30 min annealed sample, which achieved the optimal comprehensive mechanical properties. The enhanced strength originated from the synergistic interaction among element-diffusion-induced solid solution strengthening, nanoscale β-Mg 17 Al 12 precipitation, and hetero-deformation-induced (HDI) strengthening. This approach breaks the strength-ductility trade-off induced by traditional annealing processes, offering a new paradigm for designing high-performance Mg alloy laminates.