腐蚀
材料科学
合金
延展性(地球科学)
冶金
挤压
比强度
复合材料
蠕动
复合数
作者
Wanqiang Xu,N. Birbilis,Gang Sha,Yu Wang,J. Daniels,Yang Xiao,Michael Ferry
出处
期刊:Nature Materials
[Springer Nature]
日期:2015-10-19
卷期号:14 (12): 1229-1235
被引量:617
摘要
Ultra-lightweight alloys with high strength, ductility and corrosion resistance are desirable for applications in the automotive, aerospace, defence, biomedical, sporting and electronic goods sectors. Ductility and corrosion resistance are generally inversely correlated with strength, making it difficult to optimize all three simultaneously. Here we design an ultralow density (1.4 g cm−3) Mg–Li-based alloy that is strong, ductile, and more corrosion resistant than Mg-based alloys reported so far. The alloy is Li-rich and a solute nanostructure within a body-centred cubic matrix is achieved by a series of extrusion, heat-treatment and rolling processes. Corrosion resistance from the environment is believed to occur by a uniform lithium carbonate film in which surface coverage is much greater than in traditional hexagonal close-packed Mg-based alloys, explaining the superior corrosion resistance of the alloy. A magnesium-based alloy with large lithium content demonstrates high specific strength in combination with corrosion resistance, associated with the formation of a lithium carbonate surface film that protects the alloy from its environment.
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