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梁峰
2025-02-12 23:50 点击数:

梁峰,特聘三级教授,博士生导师,力学学科带头人。

E-maillf84411@163.com

话:13478219992

研究方向和成果

主要从事动力学与控制,尤其是输流管结构流固耦合振动、超材料隔振与能量俘获方面的研究。主持国家自然科学基金面上项目3项,第一完成人获辽宁省自然科学学术成果一等奖1项,江苏省高等学校科学技术研究成果三等奖1项,第一/通讯作者发表学术论文60余篇,入选20242025年度全球前2%顶尖科学家榜单。担任中国振动工程学会非线性振动专业委员会委员,承办了20234月在扬州举办的中国振动工程学会非线性振动论坛。

教育背景

2007.3 ~ 2010.1   东北大学   博士阶段

2003.9 ~ 2006.3   沈阳航空航天大学   硕士阶段

1998.9 ~ 2002.7   沈阳航空航天大学   本科阶段


科研奖励

1. 2021年,“输流管道动力学”,江苏省高等学校科学技术研究成果奖,三等奖,1/4

2. 2011年,“弹性地基上输流管道的静态和动态稳定性研究”,辽宁省自然科学学术成果奖,一等奖,1/4

科研项目

1. 2024.1 ~ 2027.12,国家自然科学基金面上项目:超结构压电输流管吸振特性与振动能量俘获研究,主持。

2. 2021.1 ~ 2024.12,国家自然科学基金面上项目:基于声子晶体理论的旋转周期结构输流管道动力学特性与减振机理研究,主持。

3. 2017.1 ~ 2020.12,国家自然科学基金面上项目:旋转输流管道三维非线性动力学研究,主持。


学术论文(近5年)

1. Feng Liang, Tian-Chi Yu, Yao Chen*, Xiao-Tian Guo*. Nonlinear energy harvesting of a piezoelectric pipe conveying fluid integrating boundary and geometric nonlinearities. Communications in Nonlinear Science and Numerical Simulation, 2026, 158: 109799.(中科院一区)

2. Yao Chen, Ji-Hou Yang, Tian Nan, Xiao-Dong Yang*, Kuan Lu, Feng Liang*. Advances in dynamics of fluid-conveying pipes: Model, strategy and experiment. International Journal of Mechanical Sciences, 2026, 312: 111241.(中科院一区)

3. An-Xiang Zhao, Xiao-Tian Guo, Feng Liang*, Yao Chen. Enhanced energy harvesting of a spinning bi-directional piezoelectric pipe conveying fluid. Applied Mathematical Modelling, 2026, 155: 116730.(中科院一区)

4. Yuan-Yuan Jin, Xiao-Tian Guo, Yao Chen, Feng Liang*. Synchronous piezoelectric-electromagnetic energy harvesting of a bi-directional functionally graded pipe conveying fluid. Thin-Walled Structures, 2026, 221: 114433.(中科院一区)

5. Xiao-Tian Guo, Wei Zhang*, Yu-Fei Zhang, Feng Liang*. Investigation on nonlinear vibration characteristics of cantilever bistable laminated plates: Theory and experiment. Thin-Walled Structures, 2026, 225: 114752.(中科院一区)

6. Yu-Chen Wang, Xiao-Tian Guo, Feng Liang*. Piezoelectric energy harvesting in a nonlinear fluid-conveying pipe attached with quasi-zero-stiffness units. Physics of Fluids, 2026, 38(1): 014111.(中科院二区)

7. Feng Liang*, Zhi-Qiang Chen. Electro-mechanical vibration control of functionally graded marine risers by a piezoelectric meta-structure design. Applied Ocean Research, 2025, 154: 104388.(中科院一区)

8. Feng Liang*, Zhi-Qiang Chen. Enhanced dynamical stability of rotating composite pipes conveying fluid by a smart piezoelectric design. Applied Mathematical Modelling, 2025, 138: 115798.(中科院一区)

9. Yao Chen, Feng Liang*, Ji-Hou Yang, Tian Nan, Xiao-Dong Yang*. Vibration isolation of fluid-conveying pipes with parallel retaining clips. Thin-Walled Structures, 2025, 216: 113744.(中科院一区)

10. Yao Chen, Xiao-Dong Yang*, Feng Liang*. Nonlinear flutter suppression of marine risers exposed to internal and external annular flows by nonlinear energy sink. Applied Mathematical Modelling, 2025, 148: 116272.(中科院一区)

11. An-Xiang Zhao, Feng Liang*, Hua-Lin Yang. Integration of vibration isolation and energy harvesting for a sandwich meta-pipe conveying fluid. Journal of Fluids and Structures, 2025, 137: 104376.(中科院二区)

12. Tian-Chi Yu, Feng Liang*, Hua-Lin Yang. Vibration energy harvesting of a three-directional functionally graded pipe conveying fluids. Applied Mathematics and Mechanics-English Edition, 2025, 46(5): 795-812.(中科院二区)

13. Yao Chen, Xiao-Dong Yang*, Feng Liang*. Nonlocal thermal-mechanical vibration of spinning functionally graded nanotubes conveying fluid based on the Timoshenko model. Acta Mechanica Solida Sinica, 2025, 38: 776-788.(中科院四区)

14. Feng Liang*, Yu Qian. Three-dimensional modeling and bandgap performance of a rotating phononic crystal pipe conveying fluid. Journal of Fluids and Structures, 2024, 130: 104172.(中科院二区)

15. Yu-Hao Ding, Zhi-Qiang Chen, Feng Liang*, Heow-Pueh Lee, Hao Yu, Sheng-Can Lin, Jing Luo. Flexural vibration control of functionally graded poroelastic pipes via periodic piezoelectric design. Acta Mechanica, 2024, 235: 3131-3147.(中科院三区)

16. Feng Liang*, Yu Qian, Yao Chen. Three-dimensional dynamics of a novel triply-gyroscopic fluid-conveying pipe system. International Journal of Mechanical Sciences, 2023, 258: 108587.(中科院一区)

17. Feng Liang*, Zhi-Qiang Chen, Wen-Hao Xu. Vibration isolation of a self-powered piezoelectric pipe conveying fluid composed of laminated fiber-reinforced composites. Applied Ocean Research, 2023, 138: 103664.(中科院一区)

18. Feng Liang*, Wen-Hao Xu, Zhiqiang Chen. Flexural–torsional vibration reduction of an eccentric phononic crystal pipe conveying fluid. Journal of Fluids and Structures, 2023, 120: 103904.(中科院二区)

19. Feng Liang*, Yao Chen, Hai-Jiang Kou, Yu Qian. Hybrid Bragg-locally resonant bandgap behaviors of a new class of motional two-dimensional meta-structure. European Journal of Mechanics - A/Solids, 2023, 97: 104832.(中科院二区)

20. Feng Liang*, Yao Chen, Jun-Jie Gong, Yu Qian. Vibration self-suppression of spinning fluid-conveying pipes composed of periodic composites. International Journal of Mechanical Sciences, 2022, 220: 107150.(中科院一区)

21. Feng Liang*, Yu Qian, Yao Chen. Wave motion of spinning periodically multi-stepped pipes — Dynamics of a novel motional 2D phononic crystal structure. Thin-Walled Structures, 2022, 180: 109922.(中科院一区)

22. Feng Liang*, Yao Chen, Dong Guan, Jing Li. Low-frequency band gap characteristics of a novel spinning metamaterial pipe with Timoshenko model. Journal of Sound and Vibration, 2022, 541: 117316.(中科院二区)

23. Feng Liang*, Yao Chen, Yi-Ze Zhao, Yu Qian. Natural property and vibration suppression of fluid-conveying phononic crystal pipes with axial periodic composites based on Timoshenko beam model. Archive of Applied Mechanics, 2022, 92(11): 3093-3108.(中科院四区)

24. Feng Liang*, An Gao, Xue-Feng Li, Wang-Dong Zhu. Nonlinear parametric vibration of spinning pipes conveying fluid with varying spinning speed and flow velocity. Applied Mathematical Modelling, 2021, 95: 320-338.(中科院一区)

25. Feng Liang*, Yu Qian, Yao Chen, An Gao. Nonlinear forced vibration of spinning pipes conveying fluid under lateral harmonic excitation. International Journal of Applied Mechanics, 2021, 13(9): 2150098.(中科院三区)

26. Feng Liang*, Dong-Dong Liang, Ying-Jing Qian*. Nonlinear performance of MEMS vibratory ring gyroscope. Acta Mechanica Solida Sinica, 2021, 34(1): 65-78.(中科院三区)


招生计划

每年招收博士生1 ~ 2人,硕士生2 ~ 3人,欢迎有力学、数学、机械工程、土木工程、海洋工程背景的学生报考。