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Piezoelectric Characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) Ceramics with Different MnO(2) Concentrations for Ultrasound Transducer Applications

In this study, we investigate the piezoelectric characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) (PNN-PZT) with MnO(2) additive (0, 0.25, 0.5, 1, 2, and 3 mol%). We focus on the fabrication of a piezoelectric ceramic for use as both actuator and sensor for ultrasound transducers. The...

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Detalles Bibliográficos
Autores principales: Kang, Myeongcheol, Kang, Lae-Hyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6947538/
https://www.ncbi.nlm.nih.gov/pubmed/31818045
http://dx.doi.org/10.3390/ma12244115
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author Kang, Myeongcheol
Kang, Lae-Hyong
author_facet Kang, Myeongcheol
Kang, Lae-Hyong
author_sort Kang, Myeongcheol
collection PubMed
description In this study, we investigate the piezoelectric characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) (PNN-PZT) with MnO(2) additive (0, 0.25, 0.5, 1, 2, and 3 mol%). We focus on the fabrication of a piezoelectric ceramic for use as both actuator and sensor for ultrasound transducers. The actuator and sensor properties of a piezoelectric ceramic depend on the piezoelectric strain coefficient d and piezoelectric voltage coefficient g, related as g = d/ε(T). To increase g, the dielectric constant ε(T) must be decreased. PNN-PZT with MnO(2) doping is synthesized using the conventional solid-state reaction method. The electrical properties are determined based on the resonant frequencies and vibration modes measured by using an impedance analyzer. The MnO(2) addition initially improves the tetragonality of the PNN-PZT ceramic, which then saturates at a MnO(2) content of 1 mol%. Therefore, the dielectric constant and piezoelectric coefficient d(33) steadily decrease, while the mechanical properties (Q(m), Young’s modulus), tanδ, electromechanical coupling coefficient k, and piezoelectric voltage coefficient g were improved at 0.5–1 mol% MnO(2) content.
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spelling pubmed-69475382020-01-13 Piezoelectric Characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) Ceramics with Different MnO(2) Concentrations for Ultrasound Transducer Applications Kang, Myeongcheol Kang, Lae-Hyong Materials (Basel) Article In this study, we investigate the piezoelectric characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) (PNN-PZT) with MnO(2) additive (0, 0.25, 0.5, 1, 2, and 3 mol%). We focus on the fabrication of a piezoelectric ceramic for use as both actuator and sensor for ultrasound transducers. The actuator and sensor properties of a piezoelectric ceramic depend on the piezoelectric strain coefficient d and piezoelectric voltage coefficient g, related as g = d/ε(T). To increase g, the dielectric constant ε(T) must be decreased. PNN-PZT with MnO(2) doping is synthesized using the conventional solid-state reaction method. The electrical properties are determined based on the resonant frequencies and vibration modes measured by using an impedance analyzer. The MnO(2) addition initially improves the tetragonality of the PNN-PZT ceramic, which then saturates at a MnO(2) content of 1 mol%. Therefore, the dielectric constant and piezoelectric coefficient d(33) steadily decrease, while the mechanical properties (Q(m), Young’s modulus), tanδ, electromechanical coupling coefficient k, and piezoelectric voltage coefficient g were improved at 0.5–1 mol% MnO(2) content. MDPI 2019-12-09 /pmc/articles/PMC6947538/ /pubmed/31818045 http://dx.doi.org/10.3390/ma12244115 Text en © 2019 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
Kang, Myeongcheol
Kang, Lae-Hyong
Piezoelectric Characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) Ceramics with Different MnO(2) Concentrations for Ultrasound Transducer Applications
title Piezoelectric Characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) Ceramics with Different MnO(2) Concentrations for Ultrasound Transducer Applications
title_full Piezoelectric Characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) Ceramics with Different MnO(2) Concentrations for Ultrasound Transducer Applications
title_fullStr Piezoelectric Characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) Ceramics with Different MnO(2) Concentrations for Ultrasound Transducer Applications
title_full_unstemmed Piezoelectric Characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) Ceramics with Different MnO(2) Concentrations for Ultrasound Transducer Applications
title_short Piezoelectric Characteristics of 0.55Pb(Ni(1/3)Nb(2/3))O(3)-0.45Pb(Zr,Ti)O(3) Ceramics with Different MnO(2) Concentrations for Ultrasound Transducer Applications
title_sort piezoelectric characteristics of 0.55pb(ni(1/3)nb(2/3))o(3)-0.45pb(zr,ti)o(3) ceramics with different mno(2) concentrations for ultrasound transducer applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6947538/
https://www.ncbi.nlm.nih.gov/pubmed/31818045
http://dx.doi.org/10.3390/ma12244115
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AT kanglaehyong piezoelectriccharacteristicsof055pbni13nb23o3045pbzrtio3ceramicswithdifferentmno2concentrationsforultrasoundtransducerapplications