Asymmetric propagation of the first order antisymmetric lamb wave in a tapered plate based on time domain analysis
- 作者: Huo S.1, Chen J.1, Song G.1, Han X.1
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隶属关系:
- State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, College of Mechanical and Vehicle Engineering
- 期: 卷 63, 编号 4 (2017)
- 页面: 393-401
- 栏目: Classical Problems of Linear Acoustics and Wave Theory
- URL: https://journals.rcsi.science/1063-7710/article/view/186172
- DOI: https://doi.org/10.1134/S1063771017040054
- ID: 186172
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详细
The asymmetric propagation of the first order antisymmetric (A1) Lamb wave in a tapered plate respectively carved with sharp bottom corner and round bottom corner is theoretically investigated. Through numerical simulation of A1 Lamb wave in time domain, we find that when the thickness of the waveguide abruptly decreases to below the cut-off thickness, about half of the A1 mode is converted into the fundamental symmetrical S0 and antisymmetrical A0 modes to pass through the defected region. Furthermore, the transmitted modes A0 and S0 are completely apart from each other and can be quantitatively evaluated. Conversely, when the thickness change is very smooth, most of the energy of A1 Lamb wave is reflected back. It is the unique mode conversion behavior that leads to great transmission difference value of A1 Lamb wave along the opposite directions. Finally, the influence of geometrical parameters on the transmission coefficient is also studied. The higher efficiency and proper working frequency range can be realized by adjusting the slope angle θ, height h1 and h2. The simple asymmetric systems will be potentially significant in applications of ultrasound diagnosis and therapy.
作者简介
Shao-Yong Huo
State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, College of Mechanical and Vehicle Engineering
Email: chen99nju@gmail.com
中国, Changsha, 410082
Jiu-Jiu Chen
State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, College of Mechanical and Vehicle Engineering
编辑信件的主要联系方式.
Email: chen99nju@gmail.com
中国, Changsha, 410082
Guang-Huang Song
State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, College of Mechanical and Vehicle Engineering
Email: chen99nju@gmail.com
中国, Changsha, 410082
Xu Han
State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, College of Mechanical and Vehicle Engineering
Email: chen99nju@gmail.com
中国, Changsha, 410082
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