材料科学
微观结构
合金
腐蚀
冶金
猝灭(荧光)
搅拌摩擦加工
相(物质)
铝
电化学
粒度
镁
锂(药物)
软化
热机械加工
复合材料
化学
有机化学
物理化学
内分泌学
物理
荧光
医学
量子力学
电极
作者
Zhuoran Zeng,Mengran Zhou,Marco Esmaily,Yuman Zhu,S. Choudhary,James C. Griffith,Jisheng Ma,Yvonne Hora,Yu Chen,Alessio Gullino,Qingyu Shi,Hidetoshi Fujii,N. Birbilis
标识
DOI:10.1038/s43246-022-00245-3
摘要
Abstract Magnesium is the lightest structural metal, and alloying with lithium makes it even lighter. However, multi-phase Mg-Li alloys typically undergo rapid corrosion, and their strength decreases at room temperature due to natural age-softening. Here, we engineer a rapidly degrading dual-phase Mg-Li-Al alloy to be durable via friction stir processing followed by liquid CO 2 quenching. The best performing alloy has a low electrochemical degradation rate of 0.72 mg·cm −2 · day −1 , and high specific strength of 209 kN·m·kg −1 . We attribute this electrochemical and mechanical durability to its microstructure, which consists of a refined grain size of approximately 2 µm and dense nanoprecipitates. This microstructure suppressed the formation of the detrimental AlLi phase, and an aluminium-rich protective surface layer also formed. This processing route might be useful for designing lightweight and durable engineering alloys.
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