【获奖】
【代表性学术著作、论文】
[1] Si-yao Liu, Ye Zhou*, Xin-cheng Miao*, Ji-yu Zhao, Xin-gang Ai & Sheng-li Li*. Synergistic mechanism of forced convection and Joule heating on microstructural evolution and mechanical properties improvement of Al-7 wt% Si casting alloy. J. Alloy Compd. (2025) (Q1, IF=6.3)
[2] Si-yao Liu, Ye Zhou*, Xin-cheng Miao*, Qing-he Xiao, Rui Guan, Xin-gang Ai & Sheng-li Li*. Refining mechanism of tin–bismuth alloy solidified structure upon applying direct current attached mold. J. Iron Steel Res. Int. (2024) (Q1, IF=3.6)
[3] Si-yao Liu, Xin-cheng Miao*, Ye Zhou*, Ji-yu Zhao, Xin-gang Ai & Sheng-li Li*. Influence of convective-thermal coupling mechanism on dendrite morphological evolution of Al-7 Wt Pct Si alloy under traveling-wave magnetic field casting. Metall Mater Trans A. (2025) (Q2, IF=2.5)
[4] Si-yao Liu, Ye Zhou*, Xin-cheng Miao*, Ji-yu Zhao, Xin-gang Ai & Sheng-li Li*. Influences on microstructure and mechanical properties of Al-7Si alloy via ambient temperature regulation coupling travelling magnetic field casting. J. Mater. Eng. Perform. (2025) (Q3, IF=2.0)
[5] Ji-yu Zhao, Xin-cheng Miao*, Ye Zhou*, Zhi-chao Tian, Si-yao Liu. Investigations on the internal flow behavior and microstructural evolution of the Al-7wt%Si alloy under multifield coupling. J. Alloy Compd. (2025) (Q1, IF=6.3)
[6] Qing-he Xiao, Ye Zhou*, Xin-cheng Miao*, Si-yao Liu, Ji-yu Zhao, Rui Guan, Xin-gang Ai, Sheng-li Li*. Study on the as-cast microstructure and mechanical properties of 35CrMo steel based on electric field control. Mater. Res. Express. (2024) (Q3, IF=2.2)
[7] Lan Cui, Ye Zhou*, Si-yao Liu, Qing-he Xiao, Hai-xiao Liu, Xin-gang Ai, Rui Guan, Sheng-li Li*. Effect of position and height of liquid slag nozzle on steel-slag flow behavior in continuous casting mold. China Foundry. (2024) (Q3, IF=2.3)
[8] 郭子夏, 周野*, 刘思尧, 赵继宇, 苗信成, 李胜利. 基于行波磁场参数优化的 Al-Si 合金组织细化机制与强韧化研究. 连铸, (2025) (T2)
【发明专利】
[1] 苗信成, 李胜利, 刘思尧, 周野, 肖卿鹤. 一种用于连铸坯的辊式强电流电磁搅拌装置(发明专利:CN 117773044 A))
[2] 刘思尧, 李胜利, 苗信成, 艾新港, 肖卿鹤, 赵继宇, 周野. 一种连铸凝固末端外加强电流改善铸坯中心质量装置(实用新型专利:202422221808.4)
【主要科研项目】