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杨飞 副教授

材料科学与工程学院

通讯地址:江苏省镇江市丹徒区长晖路666

个人邮箱:y.fei@just.edu.cn

邮政编码:212003

办公地点:材料楼426

传真:

  • 个人简介

  • 研究方向

  • 科研团队

  • 科研项目

  • 获奖动态

  • 教学随笔

  • 教育经历

  • 课程教学

  • 论文著作

  • 科研论文

  • 科研横向项目

  • 科研纵向项目

  • 科研专利

  • 科研动物专利

  • 飞,江苏泰州人,副教授,硕士生导师(专硕,学硕)

    毛明院士工作站“特聘青年科学江苏省卓越博士后“U35青创学院”江苏省青年科技人才,江苏省科技副总,江苏科技大学深蓝(卓博)人才。

    主持国家自然科学基金青年项一项(52405364参与国家自然科学基金面上项目2项

    第一及通讯作者身份在Scripta Materialia, JMP, IJMMM, MSEA, JAC, JMS, JMRT, 金属学报等期刊发表SCI论文10余

    个人ORCID链接:https://orcid.org/0000-0001-8134-251X

    每年可招收硕士研究生2~3名,欢迎对金属加工、增材制造、有限元模拟及机器学习等方向感兴趣的学生报考。


    育工作经历

    2011.09-2015.06  江苏科技大学 学士

    2015.09-2018.06  兰州理工大学 硕士

    2018.09-2023.06  东南大学 博士

    2021.12-2022.12  丹麦科技大学 CSC公派留学

    2023.06-2025.08  江苏科技大学 博士后

    2025.08-至今       江苏科技大学 副教授



  • 1.电弧增材

    2.金属大塑性变形

    3.高性能铜合金

    4.高熵合金

  • 2011.09-2015.07江苏科技大学材料成型及控制工程工学学士
    2015.09-2018.07兰州理工大学材料工程工学硕士
    2018.09-2023.06东 南 大 学材料科学与工程工学博士   导师:方峰教授
    2021.12-2022.12Technical University of DenmarkCSC公派留学(丹麦)

    导师:张晓丹,Dorte Juul Jensen 教授

    2023.06-2025.06江苏科技大学材料科学与工程师资博士后  导师:李瑞峰教授



    • Wire arc additive manufacturing of dissimilar alloys: Processing strategies and interfacial phenomena,2025-12,Journal of Manufacturing Processes,材料学院
    • Precipitation driven nano-twinning: Simultaneous enhancement of mechanical and electrical properties in Cu-Ni-Sn alloys,2025-10,Scripta Materialia,材料学院
    • Contribution of grain boundary to strength and electrical conductivity of annealed copper wires,2023-09,journal of materials research and technology,材料学院
    • Strain-Induced Balancing of Strength and Electrical Conductivity in Cu-20 wt% Fe Alloy Wires: Effect of Drawing Strain,2025-07,Acta Metallurgica Sinica (English Letters),材料学院
    • Simultaneous enhancement of tensile strength and electrical conductivity of drawn Cu–20 wt.% Fe wire through intermediate annealing,2025-06,Journal of Iron and Steel Research International,材料学院
    • Achieving a saturated tensile strength of face-centered cubic Al2.5Ti2.5(CoCrFeNi)95 high-entropy alloy via severe cold drawing,2026,Journal of Materials Science & Technology,Zhen Tian,Lichu Zhou,Fei Yang et.al,244:173-176
    • An overview of microstructure regulation treatment of Cu-Fe alloys to improve strength, conductivity, and electromagnetic shielding,2024,Journal of Alloys and Compounds,Yuna Wu,Wangjun Zhang,Fei Yang(通讯) et.al,1002: 175425
    • Effect of Cold-Drawn Deformation on Microstructure and Properties of Invar Alloy Wires,2024,Journal of Materials Engineering and Performance,Liming Dong,Fei Yang(通讯),Manwei Xu et.al,34: 6500-6509
    • Unveiling the microstructure evolution and deformation mechanisms of micro-alloying Mg-1.5Zn-0.5Zr-0.5Sr alloy via extrusion-shearing,2024,Journal of Materials Research and Technology,Nanying Piao,Fengjian Shi,Fei Yang et.al,29: 213-224
    • Tailoring good combinations between strength and ductility in novel Mg−5Sn−2Al−1Zn alloy via different hot extrusion processes,2024,Transactions of Nonferrous Metals Society of China,Fengjian Shi,Nanying Piao,Fei Yang et.al,34: 2120-2137
    • Effect of C additions to the microstructure and wear behaviour of CoCrFeNi high-entropy alloy,2023,Wear,Zeling Zhang,Yanfang Ling,Fei Yang et.al,530-531: 205032
    • Excellent strength and electrical conductivity achieved by optimizing the dual-phase structure in Cu-Fe wires,2022,Materials Science and Engineering A,Fei Yang(第一作者),Liming Dong,Feng Fang et.al,849: 143484
    • Microstructure and properties of cold-drawn Cu and Cu-Fe alloy wires,2022,IOP Conference Series: Materials Science and Engineering,Fei Yang(第一作者),Xiaodan Zhang,Feng Fang,1249: 012057
    • Effect of cold drawing strain on the microstructure, mechanical properties and electrical conductivity of low-oxygen copper wires,2021,Materials Science and Engineering A,Fei Yang(第一作者),Liming Dong,Feng Fang et,al,818: 141348
    • Mechanical properties of FeMnCoCr high entropy alloy alloyed with C/Si at low temperatures,2020,Journal of Alloys and Compounds,Fei Yang(第一作者),Liming Dong,Feng Fang et.al,859: 157876
    • Microstructural features and tensile behaviors of a novel FeMnCoCr high entropy alloys,2020,Materials Letters,Fei Yang(第一作者),Liming Dong,Feng Fang et.al,275: 128154
    • Effect of solution treatment temperature upon the microstructure and mechanical properties of hot rolled Inconel 625 alloy,2020,Journal of Materials Science,Fei Yang(第一作者),Liming Dong,Feng Fang et.al,55: 1-14
    • 高强高导Cu-Fe合金微丝研发,杨飞,在研,300000,横20250715
    • 电弧增材难混熔Cu-Fe合金的相界面调控及强化-导电机制,杨飞,在研,国家自然科学基金委,300000.0,纵20240961
    • 一种双丝电弧增材制备Cu-Fe增材件的方法,国内发明,实审中,ZL202311841339.X,江苏科技大学
    • 一种高强高导Cu-Fe合金线材及其制备方法,国内发明,实审中,ZL202410323846.2,江苏科技大学;常熟理工学院
    • 一种基于丝材的定向能量沉积叠层结构Cu-Fe增材件及其制备方法和应用,国内发明,实审中,ZL202510009473.6,江苏科技大学;常熟理工学院