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Published in: Acta Mechanica 2/2024

01-11-2023 | Original Paper

Axisymmetric free vibration modeling of a functionally graded piezoelectric resonator by a double Legendre polynomial method

Authors: Hassna Khalfi, Ismail Naciri, Rabab Raghib, Joli Randrianarivelo, Jiangong Yu, Faniry Emilson Ratolojanahary, Lahoucine Elmaimouni

Published in: Acta Mechanica | Issue 2/2024

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Abstract

The paper presents a semi-analytical method, named the Double Legendre Polynomial Method (DLPM), which is extended for modeling the axisymmetric free vibration of a functionally graded piezoelectric (FGP) hollow cylinder resonator. The FGP resonator is composed of two-phase graded piezoelectric materials, Lead zirconate titanate (PZT4) and aluminum nitrid (AlN), on the top and bottom surfaces, respectively, where the material properties gradually change along the thickness direction. The integration of FGP materials with piezoelectric materials is an innovative aspect in material science, and this paper explores their dynamic behavior, providing insights into their mechanical and electrical properties and contributes to expand our understanding of the axisymmetric free vibration of FGP hollow cylinder resonators as a crucial factor for optimizing their performance across a wide range of applications, including sensors, actuators, energy harvesting, and structural health monitoring systems. The DLPM is applied to solve the wave governing differential equations of motion, offering a new tool for studying the dynamic behavior of FGP hollow cylinders under axisymmetric vibration. The study investigates the effects of the diameter-thickness ratio on the effective electromechanical coupling coefficient and the resonant and anti-resonant frequencies of the FGP hollow cylinder. The results show that as the diameter-thickness ratio increases, the frequency-diameter product appears to become more stable. This observation is a valuable insight for optimizing the design of these resonators. Furthermore, the study presents the electrical input admittance, the natural frequencies as well as the mechanical displacement and electric potential profiles of the resonator. All the provided results are based on the calculation of the resonant frequencies. The validity of the presented results was verified by the comparison with the existing ones reported in the literature.
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Literature
1.
go back to reference Yamanouchi, M., M. Koizumi, T. Hirai, and I. Shiota. "FGM-90. Proc. First International Symposium on Functionally Graded Materials." Tokyo, Japan: FGM Forum, 1990. Yamanouchi, M., M. Koizumi, T. Hirai, and I. Shiota. "FGM-90. Proc. First International Symposium on Functionally Graded Materials." Tokyo, Japan: FGM Forum, 1990.
54.
go back to reference Xiao, S., Wang, Z., Wu, G., Guo, Y., Gao, G., Zhang, X., Cao, Y., Zhang, Y., Yu, J., Liu, P., Li, P.: The impact analysis of operational overvoltage on traction transformers for high-speed trains based on the improved capacitor network methodology. IEEE Trans. Transp. Electrif. (2023). https://doi.org/10.1109/TTE.2023.3283668CrossRef Xiao, S., Wang, Z., Wu, G., Guo, Y., Gao, G., Zhang, X., Cao, Y., Zhang, Y., Yu, J., Liu, P., Li, P.: The impact analysis of operational overvoltage on traction transformers for high-speed trains based on the improved capacitor network methodology. IEEE Trans. Transp. Electrif. (2023). https://​doi.​org/​10.​1109/​TTE.​2023.​3283668CrossRef
57.
go back to reference Naciri, I., Rguiti, A., Elmaimouni, L., Lefebvre, J.E., Ratolojanahary, F.E., Gryba, T.: Modeling of a Circular Ring MEMS Resonator with Voltage Excitation by Means of an Orthogonal Polynomial Method. Acta Acust United Acust 104(4), 553–560 (2018). https://doi.org/10.3813/AAA.919196CrossRef Naciri, I., Rguiti, A., Elmaimouni, L., Lefebvre, J.E., Ratolojanahary, F.E., Gryba, T.: Modeling of a Circular Ring MEMS Resonator with Voltage Excitation by Means of an Orthogonal Polynomial Method. Acta Acust United Acust 104(4), 553–560 (2018). https://​doi.​org/​10.​3813/​AAA.​919196CrossRef
58.
go back to reference Naciri, I., Rguiti, A., Elmaimouni, L., Lefebvre, J.E., Ratolojanahary, F.E., Yu, J.G., Belkassmi, Y., El Moussati, A.: Numerical modelling of vibration characteristics of a partially metallized micro electromechanical system resonator disc. Acta Acust United Acust 105(6), 1164–1172 (2019). https://doi.org/10.3813/AAA.919393CrossRef Naciri, I., Rguiti, A., Elmaimouni, L., Lefebvre, J.E., Ratolojanahary, F.E., Yu, J.G., Belkassmi, Y., El Moussati, A.: Numerical modelling of vibration characteristics of a partially metallized micro electromechanical system resonator disc. Acta Acust United Acust 105(6), 1164–1172 (2019). https://​doi.​org/​10.​3813/​AAA.​919393CrossRef
60.
go back to reference Falimiaramanana, D.J., et al.: Legendre Polynomial Modeling of a Piezoelectric Transformer. In: Saidi, R., El Bhiri, B., Maleh, Y., Mosallam, A., Essaaidi, M. (eds.) Advanced Technologies for Humanity, ICATH 2021. Lecture Notes on Data Engineering and Communications Technologies, Springer, Cham (2022) Falimiaramanana, D.J., et al.: Legendre Polynomial Modeling of a Piezoelectric Transformer. In: Saidi, R., El Bhiri, B., Maleh, Y., Mosallam, A., Essaaidi, M. (eds.) Advanced Technologies for Humanity, ICATH 2021. Lecture Notes on Data Engineering and Communications Technologies, Springer, Cham (2022)
64.
go back to reference Elmaimouni, L., Lefebvre, J.E., Ratolojanahary, F.E., Raherison, A., Bahani, B., Gryba, T.: Polynomial approach modeling of resonator piezoelectric disc. Key Eng. 482, 11–20 (2011)CrossRef Elmaimouni, L., Lefebvre, J.E., Ratolojanahary, F.E., Raherison, A., Bahani, B., Gryba, T.: Polynomial approach modeling of resonator piezoelectric disc. Key Eng. 482, 11–20 (2011)CrossRef
65.
go back to reference Auld, B.A.: Acoustic Fields and Waves in Solids. Krieger Publishing Company, Malabar, Florida (1990) Auld, B.A.: Acoustic Fields and Waves in Solids. Krieger Publishing Company, Malabar, Florida (1990)
67.
go back to reference Caraballo, S.: Thermo-mechanical beam element for analyzing stresses in functionally graded materials. (2011). Caraballo, S.: Thermo-mechanical beam element for analyzing stresses in functionally graded materials. (2011).
Metadata
Title
Axisymmetric free vibration modeling of a functionally graded piezoelectric resonator by a double Legendre polynomial method
Authors
Hassna Khalfi
Ismail Naciri
Rabab Raghib
Joli Randrianarivelo
Jiangong Yu
Faniry Emilson Ratolojanahary
Lahoucine Elmaimouni
Publication date
01-11-2023
Publisher
Springer Vienna
Published in
Acta Mechanica / Issue 2/2024
Print ISSN: 0001-5970
Electronic ISSN: 1619-6937
DOI
https://doi.org/10.1007/s00707-023-03766-1

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