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A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) Eco-Piezoceramics

Coupling between electrically excited electromechanical resonances of piezoelectric ceramics is undesirable for the purpose of their characterization, since the material models correspond to monomodal resonances. However, coupling takes place quite often and it is unavoidable at the shear resonance...

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Autores principales: Pardo, Lorena, Reyes-Montero, Armando, García, Álvaro, Jacas-Rodríguez, Alfredo, Ochoa, Pilar, González, Amador M., Jiménez, Francisco J., Vázquez-Rodríguez, Manuel, Villafuerte-Castrejón, María E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178390/
https://www.ncbi.nlm.nih.gov/pubmed/32260151
http://dx.doi.org/10.3390/ma13071666
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author Pardo, Lorena
Reyes-Montero, Armando
García, Álvaro
Jacas-Rodríguez, Alfredo
Ochoa, Pilar
González, Amador M.
Jiménez, Francisco J.
Vázquez-Rodríguez, Manuel
Villafuerte-Castrejón, María E.
author_facet Pardo, Lorena
Reyes-Montero, Armando
García, Álvaro
Jacas-Rodríguez, Alfredo
Ochoa, Pilar
González, Amador M.
Jiménez, Francisco J.
Vázquez-Rodríguez, Manuel
Villafuerte-Castrejón, María E.
author_sort Pardo, Lorena
collection PubMed
description Coupling between electrically excited electromechanical resonances of piezoelectric ceramics is undesirable for the purpose of their characterization, since the material models correspond to monomodal resonances. However, coupling takes place quite often and it is unavoidable at the shear resonance of standard in-plane poled and thickness-excited rectangular plates. The piezoelectric coefficient e(15), the elastic compliance s(55)(E) and the dielectric permittivity component ε(11)(S) for a piezoelectric ceramic can be determined, including all losses, using the automatic iterative method of analysis of the complex impedance curves for the shear mode of an appropriated resonator. This is the non-standard, thickness-poled and longitudinally excited, shear plate. In this paper, the automatic iterative method is modified. The purpose is to be able to deal with the analysis of the impedance curves of the non-standard plate as the periodic phenomena of coupling and decoupling of the main shear resonance and other resonances takes place. This happens when the thickness of the plate is reduced, and its aspect ratio (width of the excitation (w)/thickness for poling (t)) is increased. In this process, the frequency of the shear resonance also increases and meets those of other plate modes periodically. We aim to obtain the best approach for the shear properties of near coupling and to reveal both their validity and the limitations of the thus-obtained information. Finally, we use a plate of a Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) eco-piezoceramic as a case study.
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spelling pubmed-71783902020-04-28 A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) Eco-Piezoceramics Pardo, Lorena Reyes-Montero, Armando García, Álvaro Jacas-Rodríguez, Alfredo Ochoa, Pilar González, Amador M. Jiménez, Francisco J. Vázquez-Rodríguez, Manuel Villafuerte-Castrejón, María E. Materials (Basel) Article Coupling between electrically excited electromechanical resonances of piezoelectric ceramics is undesirable for the purpose of their characterization, since the material models correspond to monomodal resonances. However, coupling takes place quite often and it is unavoidable at the shear resonance of standard in-plane poled and thickness-excited rectangular plates. The piezoelectric coefficient e(15), the elastic compliance s(55)(E) and the dielectric permittivity component ε(11)(S) for a piezoelectric ceramic can be determined, including all losses, using the automatic iterative method of analysis of the complex impedance curves for the shear mode of an appropriated resonator. This is the non-standard, thickness-poled and longitudinally excited, shear plate. In this paper, the automatic iterative method is modified. The purpose is to be able to deal with the analysis of the impedance curves of the non-standard plate as the periodic phenomena of coupling and decoupling of the main shear resonance and other resonances takes place. This happens when the thickness of the plate is reduced, and its aspect ratio (width of the excitation (w)/thickness for poling (t)) is increased. In this process, the frequency of the shear resonance also increases and meets those of other plate modes periodically. We aim to obtain the best approach for the shear properties of near coupling and to reveal both their validity and the limitations of the thus-obtained information. Finally, we use a plate of a Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) eco-piezoceramic as a case study. MDPI 2020-04-03 /pmc/articles/PMC7178390/ /pubmed/32260151 http://dx.doi.org/10.3390/ma13071666 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pardo, Lorena
Reyes-Montero, Armando
García, Álvaro
Jacas-Rodríguez, Alfredo
Ochoa, Pilar
González, Amador M.
Jiménez, Francisco J.
Vázquez-Rodríguez, Manuel
Villafuerte-Castrejón, María E.
A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) Eco-Piezoceramics
title A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) Eco-Piezoceramics
title_full A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) Eco-Piezoceramics
title_fullStr A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) Eco-Piezoceramics
title_full_unstemmed A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) Eco-Piezoceramics
title_short A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba(0.85)Ca(0.15)Ti(0.90)Zr(0.10)O(3) Eco-Piezoceramics
title_sort modified iterative automatic method for characterization at shear resonance: case study of ba(0.85)ca(0.15)ti(0.90)zr(0.10)o(3) eco-piezoceramics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178390/
https://www.ncbi.nlm.nih.gov/pubmed/32260151
http://dx.doi.org/10.3390/ma13071666
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