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Article

On the Directivity of Lamb Waves Generated by Wedge PZT Actuator in Thin CFRP Panel

1
Aircraft Engineering Dept, EFRC The Southern Scientific Centre of Russian Academy of Science, 344006 Rostov-on-Don, Russia
2
Microelectronic Dept, the National Kaohsiung University of Science and Technology, Kaohsiung 81157, Taiwan
3
Faculty of Architecture and Civil Engineering, RheinMain University of Applied Science, 65197 Wiesbaden, Germany
4
Institute of Mechanics and Applied Mathematics, Southern Federal University, 344006 Rostov-on-Don, Russia
*
Author to whom correspondence should be addressed.
Materials 2020, 13(4), 907; https://doi.org/10.3390/ma13040907
Submission received: 19 December 2019 / Revised: 13 February 2020 / Accepted: 14 February 2020 / Published: 18 February 2020
(This article belongs to the Collection Selected Papers from IMETI)

Abstract

This paper addresses investigation of guided-wave excitation by angle-beam wedge piezoelectric (PZT) transducers in multilayered composite plate structure with orthotropic symmetry of the material. The aim of the present study is to determine the capability of such actuators to provide the controlled generation of an acoustic wave of a desirable type with the necessary wavelength, propagation distance and directivity. The studied CFRP (Carbon Fiber Reinforced Plastic) panel is considered to be homogenous, with effective elastic moduli and anisotropic structural damping, whose parameters were determined experimentally. According to the results of dispersion analysis and taking into account the data of wave attenuation in a highly damping CFRP composite, the two types of propagating waves A0 and S0 were considered theoretically and experimentally in the frequency range of 10–100 kHz. Using the results of a previous study, we reconstructed the structure of the wedge actuator, to develop its finite-element (FE) model, and a modal analysis was carried out that revealed the most intense natural vibration modes and their eigenfrequencies within the frequency range used. Both experimental and numerical studies of the generation, propagation, directivity and attenuation of waves in the orthotropic composite panel under study revealed the influence of the angular orientation of the actuator on the formation of wave patterns and allowed to determine the capabilities of the wave’s directivity control.
Keywords: acoustic based SHM; orthotropic polymeric composites; Lamb waves; horizontally polarized SH waves; angle-beam wedge transducer; waves directivity acoustic based SHM; orthotropic polymeric composites; Lamb waves; horizontally polarized SH waves; angle-beam wedge transducer; waves directivity

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MDPI and ACS Style

Shevtsov, S.; Chebanenko, V.; Shevtsova, M.; Chang, S.-H.; Kirillova, E.; Rozhkov, E. On the Directivity of Lamb Waves Generated by Wedge PZT Actuator in Thin CFRP Panel. Materials 2020, 13, 907. https://doi.org/10.3390/ma13040907

AMA Style

Shevtsov S, Chebanenko V, Shevtsova M, Chang S-H, Kirillova E, Rozhkov E. On the Directivity of Lamb Waves Generated by Wedge PZT Actuator in Thin CFRP Panel. Materials. 2020; 13(4):907. https://doi.org/10.3390/ma13040907

Chicago/Turabian Style

Shevtsov, Sergey, Valery Chebanenko, Maria Shevtsova, Shun-Hsyung Chang, Evgenia Kirillova, and Evgeny Rozhkov. 2020. "On the Directivity of Lamb Waves Generated by Wedge PZT Actuator in Thin CFRP Panel" Materials 13, no. 4: 907. https://doi.org/10.3390/ma13040907

APA Style

Shevtsov, S., Chebanenko, V., Shevtsova, M., Chang, S.-H., Kirillova, E., & Rozhkov, E. (2020). On the Directivity of Lamb Waves Generated by Wedge PZT Actuator in Thin CFRP Panel. Materials, 13(4), 907. https://doi.org/10.3390/ma13040907

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