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西北工业大学航海学院导师教师师资介绍简介-唐利玲

本站小编 Free考研考试/2021-06-29


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基本信息 The basic information
唐利玲

航海学院


博士研究生毕业

工学博士


副教授




船舶与海洋工程,物理学-声学,力学-固体力学





工作经历 Work Experience
2019.01-至今 西北工业大学 副教授
2018.01-2019.01 香港理工大学 Research Associate
2017.04-2017.07 宾夕法尼亚州立大学 访问****



教育经历 Education Experience
2014.09-2018.03 香港理工大学 博士
2011.09-2014.07 西安交通大学 硕士
2007.09-2011.07 西安交通大学 学士



招生信息 Admission Information
学术型:水声工程
专业型:资源与环境



科学研究 Scientific Research
研究方向:
振动与噪声控制、声学黑洞结构、智能材料与结构


主持项目:
国家自然科学基金青年项目
中国博士后基金面上项目
中央高校基本科研业务费资助项目



学术成果 Academic Achievements
代表性期刊论文:
[1] L. L. Tang, L. Cheng, Kean Chen. Complete sub-wavelength flexural wave band gaps in plates with periodic acoustic black holes. Journal of Sound and Vibration, 2021, 502, 116102. (SCI,中科院二区 Top期刊)
[2] L. L. Tang, L. Cheng. Impaired sound radiation in plates with periodic tunneled Acoustic Black Holes. Mechanical Systems and Signal Processing, 2020, 135, 106410. (SCI,中科院一区 Top期刊)
[3] L. L. Tang, L. Cheng. Periodic plates with tunneled Acoustic-Black-Holes for directional band gap generation. Mechanical Systems and Signal Processing, 2019, 133, 106257. (SCI,中科院一区 Top期刊)
[4] L. L. Tang, L. Cheng. Loss of acoustic black hole effect in a structure of finite size. Applied Physics Letters, 2016, 109, 014102. (SCI,中科院二区 Top期刊)
[5] L. L. Tang, L. Cheng. Enhanced acoustic black hole effect in beams with a modified thickness profile and extended platform. Journal of Sound and Vibration, 2017, 391, 116-126. (SCI,中科院二区 Top期刊)
[6] L. L. Tang, L. Cheng, H. L. Ji, J. H. Qiu. Characterization of acoustic black hole effect using a one-dimensional fully-coupled and wavelet-decomposed semi-analytical model. Journal of Sound and Vibration, 2016, 374, 172-184. (SCI,中科院二区 Top期刊)
[7] L. L. Tang, L. Cheng. Ultrawide band gaps in phononic beams with double-leaf acoustic black hole indentations. The Journal of the Acoustical Society of America, 2017,142, 2802-2807. (SCI,中科院三区 声学领域旗舰期刊)
[8] L. L. Tang, and L. Cheng. Broadband local resonant bandgaps in periodic structures with embedded acoustic black holes. Journal of Applied Physics, 2017, 121, 194901. (SCI,中科院三区)
[9] L. L. Tang, F. Jin. Influence of viscoelastic interfaces on power transmission through an elastic plate by finite piezoelectric transducers. Journal of Vibration and Control, 2017, 23, 1193-1205. (SCI,中科院三区)
[10]N.S. Gao, L.L. Tang, J. Deng, K. Lu, H. Hou, K. Chen. Design, fabrication and sound absorption test of composite porous metamaterial with embedding I-plates into porous polyurethane sponge. Applied Acoustics, 2021, 175, 107845. (SCI,中科院二区)
[11]J.S. Zhang, L.L. Tang, L. Liu, J.W. Zhao, Z.C. Yang, P.F. Li. Modeling of humidity effect on electromechanical properties of viscoelastic dielectric elastomer. International Journal of Mechanical Sciences, 2021, 193, 106177. ( SCI,中科院二区)
[12]T. Zhou, L. L. Tang, and L. Cheng, Dynamic and static properties of a double-layered compound acoustic black hole structures. International Journal of Applied Mechanics, 2017, 9, **. (SCI,中科院三区)
[13]J. S. Zhang, L. L. Tang, B. Li, Y. Wang, and H. L. Chen. Modeling of the dynamic characteristic of viscoelastic dielectric elastomer actuators subject to different conditions of mechanical load. Journal of Applied Physics, 2015, 117, 084902. (SCI,中科院三区)
[14]J. S. Zhang, H. L. Chen, L. L. Tang, B. Li, J. Sheng, and L. Liu. Modelling of spring roll actuators based on viscoelastic dielectric elastomers. Applied Physics A: Materials Science & Processing, 2015, 119, 825-835. (SCI,中科院四区)












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