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Ductilization of 2.6-GPa alloys via short-range ordered interfaces and supranano precipitates

来源:    发布时间 : 2026-02-02   点击量:  
年份 专利号
授权公告日 发明人
期号、页码 387,6732(2025) 期刊名称 Science
文章作者 Yongqiang Yan,Wenhao Cha,Chang Liu,Zhiwei Shan,Jian Lu,Ge WuSida Liu,Yan Ma,Junhua Luan,Ziyuan Rao,

Higher strength and higher ductility are desirable for structural materials. However, ultrastrong alloys inevitably show decreased strain-hardening capacity, limiting their uniform elongation. We present a supranano (<10 nanometers) and short-range ordering design for grain interiors and grain boundary regions, respectively, in fine-grained alloys based on vanadium, cobalt, and nickel, with additions of tungsten, copper, aluminum, and boron. The pronounced grain boundary–related strengthening and ductilization mechanism is realized through segregation of the short-range ordering near the grain boundary. Furthermore, the supranano ordering with a larger size has an enhanced pinning effect for dislocations and stacking faults, multiplied and accumulated in grain interiors during plastic deformation. These mechanisms promote continuously increased flow stress until fracture of the alloy at 10% strain with 2.6-gigapascal tensile stress.


Link:Ductilization of 2.6-GPa alloys via short-range ordered interfaces and supranano precipitates | Science

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