姓  名刘帽
出生年月1989年11
政治面貌中共党员最高学位博士
职  称讲师任职年月 
职  务 任职年月 
所在学科力学博导/硕导硕导
学习与工作经历

学习经历:
2017.10—2019.06,马里兰大学巴郡分校,机械工程系, 交流访问
2016.03—2019.10,哈尔滨工业大学,航天学院,力学,博士
工作经历:

2019.12-2026.03 江苏大学 土木工程与力学学院

2026.04-至今 江苏大学 低空技术学院


学术与社会任职

中国力学学会会员;
江苏省振动工程学会非线性振动与控制专委会委员;
江苏省振动工程学会航空航天力学及控制专委会委员

主讲课程

本科生
工程力学
研究生
振动理论

研究领域

非线性波动力学;结构振动与弹性波控制;超材料;新型隐身结构设计理论

科研项目

在研项目
1. 江苏省双创计划-双创博士课题,2020.09至2022.08,项目负责人
2. 国家自然科学基金项目:有限变形声子晶体结构中波-波相互作用与能量传输机理研究,No. 12102150, 2022.01至2024.12,项目负责人
3.横向课题:非线性振动条件下声学覆盖层声传递特性理论建模与仿真分析,2025.05至2029.12项目负责人
结题项目
1. 江苏省自然科学基金(青年项目):弹性波在非线性声子晶体结构中的传播特性与控制,No.BK20200884,2020.09至2023.08,项目负责人;
2. 江苏省高校自然科学基金项目:新型隐身结构设计理论及弹性波引导与调控研究,No. 20KJB130004, 2021.01至2022.12,项目负责人;

主要论著

论文
1. Mao Liu, Boqian Xia. Research on new wave behavior and mechanisms in nonlinear diatomic acoustic metamaterials with linear damping, Nonlinear Dynamics, 2023, Doi:10.1007/s11071-023-09058-6. (SCI, 顶刊)
2. Mao Liu, Quan Yan. Guide and control of thermal conduction with isotropic thermodynamic parameters based on a rotary-concentrating device, Chinese Physics B, 2023, 32: 044402. (SCI, 卓越梯队期刊)
3. Chao Li, Mao Liu, Mitao Song. Analysis of Wave Propagation Characteristics of Parity-time Symmetric Phononic-crystal Nanorods, Noise and Vibration Control, 2023, 43(1): 50-54. (北大核心)
4. Mao Liu, Fujian Zhou. Spectro-spatial analysis of elastic wave propagation in nonlinear elastic metamaterial systems with damping, Chaos, 2022, 32(11):113124. (SCI, 顶刊)
5. Mao Liu, Fujian Zhou. Spectro-spatial analysis of nonlinear wave propagation behaviors in damped acoustic metamaterial systems, Journal of Vibration Engineering & Technologies, 2022, 10(4): 1265-1278. (SCI)
6. Mao Liu, Haijie Yu, and Ben Wang.Tuning and controlling antiplane shear wave propagation in elastic membranes, AIP Advances, 2022, 12(8):085319. (SCI)
7. Chao Li, Mao Liu, Mitao Song. Modeling and analysis of elastic waves in one-dimensional Micro-Nano Phononic Crystals Based on the Nonlocal Theory, Journal of Vibration Engineering & Technologies, 2022, 10(4): 1265-1278. (SCI)
8. Mao Liu, Lijun Zhuo et al. Controlling Heat Conduction with Nonlinear-Transformation Cloaking, International Journal of Thermophysics, 2021, 42(6):89. (SCI)
9. M. Liu, and W.D. Zhu. Design and analysis of nonlinear-transformation-based broadband cloaking for acoustic wave propagation [J]. Wave Motion, 2020, 92: 102421. (SCI)
10. M. Liu, and W.D. Zhu. Modeling and analysis of in-plane and out-of-plane elastic wave propagation in a phononic-crystal circular beam [J]. Journal of Sound and Vibration, 2019, 462: 114886. (SCI)
11. M. Liu, and W.D. Zhu. Nonlinear transformation-based broadband cloaking for flexural waves in elastic thin plates [J]. Journal of Sound and Vibration, 2019, 445: 270-287. (SCI, 顶刊)
12. M. Liu, and W.D. Zhu. Modeling and analysis of nonlinear wave propagation in one-dimensional phononic structures [J]. ASME Journal of Vibration and Acoustics, 2018, 140(6): 061010. (SCI,顶刊)
13. M. Liu, and W.D. Zhu. Controlling out-of-plane elastic shear wave propagation with broadband cloaking [J]. ASME Journal of Applied Mechanics, 2018, 85(8): 081002. (SCI,顶刊)
14. M. Liu, J.W. Xiang, and Y.T. Zhong. Band structures analysis method of two dimensional phononic crystals using wavelet-based elements [J]. Crystals, 2017, 7(11): 328. (SCI)
15. M. Liu, J.W. Xiang, and Y.T. Zhong. The band gap and transmission characteristics investigation of local resonant quaternary phononic crystals with periodic coating [J], Applied Acoustics, 2015, 100: 10-17. (SCI)
16. M. Liu, P. Li, Y.T. Zhong, and J.W. Xiang. Research on the band gap characteristics of two-dimensional phononic crystals microcavity with local resonant structure [J], Shock and Vibration, 2015, 2015: 431476. (SCI)
17. M. Liu, J.W. Xiang, H.F. Gao, Y.Y. Jiang, Y.Q. Zhou, and F.P. Li. Research on band structure of one-dimensional phononic crystals based on wavelet finite element method [J], CMES-Computer Modelling in Engineering and Science, 2014, 97(5): 425-436. (SCI)

获奖情况

 

发明专利

 

重要学术活动

 

人生格言

只要勇敢向前,前面的路一定繁花盛开!

联系方式

Email:mliu@ujs.edu.cn