教育背景
工作经历
项目课题经历
论文、成果、著作等
发表论文
[1]
闫庚旺,闫磊,李盈利*. 车底设备激励下地铁车体结构响应分析.《噪声与振动控制》,2020,40(3)
[2]
张咏琳,汪凯森,赵艳菊,李盈利*. 车辆型材结构的隔声性能优化研究.《噪声与振动控制》,2019,39(5)
[3] Yingli Li, Kun
Zhou*, Pengfei Tan, Shu
Beng Tor, Chee Kai Chua, Kah Fai Leong. Modelling temperature and residual
stress fields in selective laser melting. International Journal of Mechanical
Sciences, 2018,136:24-35.
[4] Yingli Li*, Daolin Xu. Force transmissibility of floating raft systems with
quasi-zero-stiffness isolators. Journal
of Vibration and Control, 2017:
107754631770846.
[5] Yingli Li*, Daolin Xu. Vibration attenuation of high dimensional quasi-zero stiffness floating raft system. International
Journal of Mechanical Sciences, 2017,126:
186-195.
[6] Yingli Li, Kun
Zhou*, Shu Beng Tor, Chee
Kai Chua, Kah Fai Leong. Heat
transfer and phase transition in the selective laser melting process. International Journal
of Heat and Mass Transfer, 2017,108: 2408-2416.
[7] Yang Chen*, Yiming Fu,
Jun Zhong, Yingli Li. Nonlinear dynamic
responses of functionally graded tubes subjected to moving load based on a
refined beam model. Nonlinear Dynamics, 2017, DOI
10.1007/s11071-016-3321-0.
[8] Jiaxi Zhou*, Kai Wang,
Daolin Xu, Huajiang Ouyang, Yingli Li. A six-DOF
vibration isolation platform supported by a hexapod of quasi-zero-stiffness
struts. Journal of Vibration and Acoustics, 2017, doi:10.1115/1.4035715.
[9] Jiaxi Zhou*, Qingyu
Xiao, Daolin Xu, Huajiang Ouyang, Yingli Li. A novel
quasi-zero-stiffness strut and its applications in six-degree-of-freedom
vibration isolation platform. Journal of Sound & Vibration,2017, 394:
59-74.
[10] Yingli Li*, Daolin Xu. Spectrum reconstruction of quasi-zero stiffness
floating raft systems. Chaos,
Solitons & Fractals, 2016, 93:123-129.
[11] Yingli Li, Daolin Xu*. Chaotification of quasi-zero-stiffness system with
time delay control. Nonlinear Dynamics, 2016, 86:353-368.
[12] Jun Zhong*, Yiming
Fu, Yang Chen, Yingli Li.
Analysis of nonlinear dynamic responses for functionally graded beams resting
on tensionless elastic foundation under thermal shock. Composite Structures,
2016, 142: 272–277.
[13] Jun Zhong*, Yiming
Fu , Detao Wan , Yingli Li.
Nonlinear bending and vibration of functionally graded tubes resting on elastic
foundations in thermal environment based on a refined beam model.Applied
Mathematical Modelling, 2016, 1–14.
[14] Yingli Li*, Yiming Fu. A thermo-elasto-plastic model for a fiber-metal laminated beam with interfacial damage. Applied Mathematical Modelling, 2015,39(12):3317-3310.
[15] Yingli Li*, Yiming Fu. Reliability analysis for the stability of
piezoelectric delaminated axisymmetric laminated cylindrical shells. Mechanics of Advanced Materials and Structures,
2014, 21 (4), 284-292.
[16] Yingli Li, Shaker A. Meguid*, Yiming Fu, Daolin Xu. Nonlinear analysis
of thermally and electrically actuated functionally graded material microbeam. Proceedings
of the Royal Society A: Mathematical,
Physical and Engineering Sciences, 2014, 470, 2162, 20130473;
doi: 10.1098/rspa. 2013. 0473.
[17] Yingli Li, Daolin Xu*, Yiming Fu, Jing Zhang. Dynamic effects of
delayed feedback control on nonlinear vibration isolation floating raft systems.
Journal of Sound and Vibration, 2014, 333: 2665-2676.
[18] Yingli Li, Shaker A.
Meguid*, Yiming Fu, Daolin Xu. Unified
nonlinear quasistatic and dynamic analysis of RF-MEMS switches. Acta Mechanica, 2013, 224 (8):
1741-1755.
[19] Yingli Li, Daolin Xu*, Yiming Fu, Jiaxi Zhou. Chaotification of a
nonlinear vibration isolation system by dual time delayed feedback control.
International Journal of Bifurcation and Chaos, 2013, 23(6)1350096.
[20] Yingli Li*, Daolin Xu, Yiming Fu, Jiaxi
Zhou. Chaotification and optimization design of a nonlinear vibration
isolation system. Journal of Vibration and Control, 2012,
18(14):2129-2139.
[21] Yingli Li, Daolin Xu*, Yiming Fu, Jiaxi Zhou. Nonlinear
dynamic analysis of 2-DOF nonlinear vibration isolation floating raft systems
with feedback control. Chaos, Solitons & Fractals, 2012, 45: 1092-1099.
[22] Yingli Li*, Yiming Fu, Hongliang Dai. Postbuckling
and delamination growth for delaminated piezoelectric elasto-plastic laminated
beams under hygrothermal conditions. Journal of Mechanic of Materials and Structures, 2012, 7(1): 85-102
[23] Jing Zhang, Daolin Xu*, Jiaxi
Zhou, Yingli Li.
Chaotification of Vibration Isolation Floating Raft System via Time-delay
Feedback Control. Chaos, Solitons & Fractals, 2012, 45: 1255-1265.
[24] Yingli Li*, Yiming Fu, Yiqi Mao. Analysis of
delamination fatigue growth for delaminated piezoelectric elasto-plastic
laminated beams under hygrothermal conditions. Composite Structures, 2011,
93(2): 889-901
[25] Yingli Li, Daolin Xu*, Yiming Fu, Jiaxi Zhou. Stability and chaotification of vibration isolation
floating raft systems with time-delayed feedback control. Chaos: An
Interdisciplinary Journal of Nonlinear Science, 2011, 21, 033115
[26] Yiqi Mao*, Yiming Fu,
Changping Chen, Yingli Li.
Nonlinear dynamic response for functionally graded shallow spherical shell
under low velocity impact in thermal environment. Applied
Mathematical Modelling, 2011, 35:2887–2900.
[27]
周加喜, 徐道临*, 李盈利. 基于最优时延反馈控制的主-被动非线性隔振方法研究. 振动工程学报, 2011, 24(6):
639-645.
[28] Jiaxi Zhou, Daolin
Xu*, Yingli Li. Chaotifing
Duffing-type System with Large Parameter Range Based on Optimal Time-Delay
Feedback Control. Proceedings of 2010
International Workshop on Chaos-Fractal Theories and Applications.Kunming,Yunnan,China, 2010.
[29] 傅衣铭, 李盈利*. 湿热条件下具脱层压电层合梁的后屈曲及脱层扩展分析. 固体力学学报. 2009, 30(3): 309-317
[30]朱石坚,徐道临.舰船机械隔振系统线谱混沌化控制. 国防工业出版社,2014-8-1.参与此著作第五、六、九、十章的撰写。
专利
(1) 李盈利,杨志刚,梁习锋.一种轨道吸音板,ZL201620761968.0(LI Yingli, YANG Zhigang, LIANG Xifeng, A track sound absorbing plateZL201620761968.0)
科研项目
2019.1-2021.12 湖南省自然科学青年基金项目“全局-直接传递关系振动噪声传递路径与能量传播规律研究”(2019JJ50752),经费5万,主持
2017.7-2020.6 国家“十三五”重点研发计划“面向全生命周期成本的轨道交通设计、节能与环境友好”项目“轨道交通列车环境友好技术”课题,子任务“轨道交通系统噪声识别、传播及控制”(2017YFB1201103-04),经费105万,主持
2016.7-2020.6 国家“十三五”重点研发计划“时速400公里及以上高速客运装备关键技术”项目“基于噪声主动控制的综合舒适度控制技术研究”课题,子任务“气动噪声机理及仿真分析技术研究” ( 2016YFB1200503-03),经费40万,排名第二
2017.3-2017.12 广州十八、二十二号线越行车站模拟计算, 经费8万,主持
2016.5-2020.12 中南大学升华猎英计划“高速列车振动噪声控制研究”, 经费50万,主持
2015.1-2017.12 国家自然科学青年基金项目“高维准零刚度浮筏系统的混沌化频谱重构”(11402082),经费25万,主持
专利、著作版权等
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