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Original Articles

Composite piezoelectrics: Basic research to a practical device

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Pages 309-320 | Received 01 Jun 1988, Published online: 08 Feb 2011

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Read on this site (3)

A. N. Reznichenko, M. A. Lugovaya, E. I. Petrova, N. A. Shvetsova & A. N. Rybyanets. (2019) Lead-free porous and composite materials for ultrasonic transducers applications. Ferroelectrics 539:1, pages 93-100.
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David P. Williams, William B. Carlson, Walter A. Schulze & Steven M. Pilgrim. (2000) Composite hydrophone devices coupling piezoelectricity and tensegrity. Materials Research Innovations 3:4, pages 226-230.
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Articles from other publishers (49)

Sabiju Valiya Valappil, Johannes F. L. Goosen & Alejandro M. Aragón. (2023) Phononic Crystals for Suppressing Crosstalk in Ultrasonic Flowmeters. IEEE Transactions on Instrumentation and Measurement 72, pages 1-11.
Crossref
Chao Sun, Chao Zhong, Likun Wang, Ning Lv & Lei Qin. (2022) Study on Suppression of Transverse Mechanical Coupling of Rectangular Double-Laminated Bending Vibration Elements. Crystals 12:12, pages 1737.
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Bomkesh Bhoi & Pranati Purohit. (2022) A brief review on the status of binary and ternary relaxor-PT materials. Materials Today: Proceedings 62, pages 5298-5301.
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Jiang Shao, Mingbo Ji & Xue Liu. (2021) A Developed Rahaman Model for Estimating the Dielectric Permittivity of Polymer–Barium Titanate Nanocomposites. Industrial & Engineering Chemistry Research 60:36, pages 13265-13271.
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Xiao Ma, Zhiyong Wang, Bo Zhou & Shifeng Xue. (2019) A study on performance of distributed piezoelectric composite actuators using Galerkin method. Smart Materials and Structures 28:10, pages 105049.
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E. I. Petrova, M. A. Lugovaya, I. A. Shvetsov, N. A. Shvetsova, A. N. Reznichenko & A. N. Rybyanets. 2018. Advanced Materials. Advanced Materials 49 63 .
I. A. Shvetsov, E. I. Petrova, M. A. Lugovaya, N. A. Shvetsova, S. A. Shcherbinin & A. N. Rybyanets. 2018. Advanced Materials. Advanced Materials 33 47 .
I V Lisnevskaya, TG Lupeiko & KV Myagkaya. (2016) Investigation of the influence of various factors on the dielectric, piezoelectric, and magnetoelectric properties of 1-3, 3-1, and 1-1 multiferroic composites. Journal of Composite Materials 51:4, pages 507-517.
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Manvir S. Kushwaha. (2016) The phononic crystals: An unending quest for tailoring acoustics. Modern Physics Letters B 30:19, pages 1630004.
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Muhammad Saleem Mirza, Tariq Yasin, Masroor Ikram, Muhammad Nasir Khan & Muhammad Shuaib. (2014) Fabrication of 1–3 connectivity (Ba0.95Pb0.05)(Ti0.99Co0.01)O3/monothane-A70 composites by die-pressing method and their electrical characterizations. Ceramics International 40:8, pages 11477-11484.
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Evaristo Alexandre Fãlcao, Laís Weber Aguiar, Eriton Rodrigo Botero, Anderson Rodrigues Lima Caires, Nelson Luis Domingues, Cláudio Teodoro de Carvalho & Andrelson Wellinghton Rinaldi. 2013. Processing and Properties of Advanced Ceramics and Composites V. Processing and Properties of Advanced Ceramics and Composites V 253 265 .
I. V. Lisnevskaya & T. G. Lupeiko. (2012) PZT-36/NiCo0.02Cu0.02Mn0.1Fe1.8O4 − δ magnetoelectric rod composites with 1-3, 3-1, and 1-1 connectivity. Inorganic Materials 48:4, pages 410-415.
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Shujun Zhang & Fei Li. (2012) High performance ferroelectric relaxor-PbTiO3 single crystals: Status and perspective. Journal of Applied Physics 111:3.
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Yan Li, Hui Zheng, Shiguo Long & Lianglong Wu. (2011) Effects of the piezoelectric phase’s geometric properties on effective coefficients of 1–3 piezoelectric composites. Computational Materials Science 50:7, pages 2135-2141.
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V. V. Akhnazarova, V. D. Komarov, O. N. Razumovskaya, L. A. Reznichenko, L. A. Shilkina, S. I. Dudkina & V. V. Gershenovich. (2010) Special features of the grain structure of polycrystalline NaNbO3 with 3-0 connection. Russian Physics Journal 52:9, pages 957-964.
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. 2009. Electromechanical Properties in Composite Based on Ferroelectrics. Electromechanical Properties in Composite Based on Ferroelectrics 43 99 .
N. Rajapakse & Yue Chen. (2008) A coupled analytical model for hydrostatic response of 1-3 piezocomposites. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 55:8, pages 1847-1858.
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Chang-Bun Yoon, Sung-Mi Lee, Seung-Ho Lee, Hyoun-Ee Kim & Kyung-Woo Lee. (2007) Transverse 1-3 piezoelectric ceramic/polymer composite with multi-layered PZT ceramic blocks. Sensors and Actuators A: Physical 134:2, pages 480-485.
Crossref
Manvir S. Kushwaha. (2006) Band Gap Engineering in N-Dimensional Phononic Crystals. Band Gap Engineering in N-Dimensional Phononic Crystals.
YUE ZHANG, XUE-CHUAN ZHANG & SHU-BING WANG. (2012) PREPARATION OF 1-3 CONNECTIVITY COMPOSITE FILMS OF WELL-ALIGNED ZnO WHISKER ARRAYS WITH AN ORGANIC RESIN . International Journal of Modern Physics B 20:25n27, pages 3658-3662.
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James E. Smay, Joseph CesaranoIIIIII, Bruce A. Tuttle & Jennifer A. Lewis. (2008) Directed Colloidal Assembly of Linear and Annular Lead Zirconate Titanate Arrays. Journal of the American Ceramic Society 87:2, pages 293-295.
Crossref
L. A. Reznichenko, L. A. Shilkina, A. V. Turik & S. I. Dudkina. (2002) Giant piezoelectric anisotropy in sodium niobate with a composite-like structure. Technical Physics 47:2, pages 206-208.
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Julián Bravo-Castillero, Raúl Guinovart-Dı́az, Federico J. Sabina & Reinaldo Rodrı́guez-Ramos. (2001) Closed-form expressions for the effective coefficients of a fiber-reinforced composite with transversely isotropic constituents – II. Piezoelectric and square symmetry. Mechanics of Materials 33:4, pages 237-248.
Crossref
M Akhnak, O Martı́nez, L Gomez-Ullate & F Montero de Espinosa. (2000) Piezoelectric sectorial 2D array for 3D acoustical imaging. Sensors and Actuators A: Physical 85:1-3, pages 60-64.
Crossref
T.R. Howarth & R.Y. Ting. (2000) Electroacoustic evaluations of 1-3 piezocomposite SonoPanel/sup TM/ materials. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 47:4, pages 886-894.
Crossref
A. SAFARI, B. JADIDIAN & E.K. AKDOGAN. 2000. Comprehensive Composite Materials. Comprehensive Composite Materials 533 561 .
J.F. Tressler, S. Alkoy, A. Dogan & R.E. Newnham. (1999) Functional composites for sensors, actuators and transducers. Composites Part A: Applied Science and Manufacturing 30:4, pages 477-482.
Crossref
Sang-Goo Lee, Ralph G. Monteiro, Robert S. Feigelson, Howard S. Lee, Myeongkyu Lee & Seung-Eek Park. (1999) Growth and electrostrictive properties of Pb(Mg1/3Nb2/3)O3 crystals. Applied Physics Letters 74:7, pages 1030-1032.
Crossref
Steven M. Ting, Victor F. Janas & Ahmad Safari. (2005) Relic Processing of Fine‐Scale, Large‐Area Piezoelectric Ceramic Fiber/Polymer Composites. Journal of the American Ceramic Society 79:6, pages 1689-1692.
Crossref
W. Watzka, S. Seifert, H. Scholz, D. Sporn, A. Schonecker & L. Seffner. (1996) Dielectric and ferroelectric properties of 1-3 composites containing thin PZT-fibers. Dielectric and ferroelectric properties of 1-3 composites containing thin PZT-fibers.
C.J. Dias & D.K. Das-Gupta. (1996) Inorganic ceramic/polymer ferroelectric composite electrets. IEEE Transactions on Dielectrics and Electrical Insulation 3:5, pages 706-734.
Crossref
C L Hom & N Shankar. (1995) A numerical analysis of relaxor ferroelectric multilayered actuators and 2-2 composite arrays. Smart Materials and Structures 4:4, pages 305-317.
Crossref
Victor F. Janas & Ahmad Safari. (2005) Overview of Fine‐Scale Piezoelectric Ceramic/Polymer Composite Processing. Journal of the American Ceramic Society 78:11, pages 2945-2955.
Crossref
M.S. Seyed-Bolorforosh. (1995) Novel integrated impedance matching layer. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 42:5, pages 809-811.
Crossref
Christopher P. Bowen, Thomas R. Shrout, Robert E. Newnham & Clive A. Randall. (2016) Tunable Electric Field Processing of Composite Materials. Journal of Intelligent Material Systems and Structures 6:2, pages 159-168.
Crossref
Wenwu Cao, Q.M. Zhang, J.Z. Zhao & L.E. Cross. (1995) Effects of face plates on surface displacement profile in 2-2 piezoelectric composites. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 42:1, pages 37-41.
Crossref
Q. M. Zhang & Xuecang Geng. (1994) Dynamic modeling of piezoceramic polymer composite with 2-2 connectivity. Journal of Applied Physics 76:10, pages 6014-6016.
Crossref
Jeffry W. Stevenson, Mary R. Reidmeyer & Wayne Huebner. (2005) Fabrication and Characterization of PZT/Thermoplastic Polymer Composites for High‐Frequency Phased Linear Arrays. Journal of the American Ceramic Society 77:9, pages 2481-2484.
Crossref
H.I. Schlaberg & J.S. Duffy. (1994) Piezoelectric polymer composite arrays for ultrasonic medical imaging applications. Sensors and Actuators A: Physical 44:2, pages 111-117.
Crossref
Q.M. Zhang, X. Geng, Y. Shui, W. Cao & L.E. Cross. (1994) Ultrasonic piezoceramic-polymer composite transducer-dynamic behavior and effects of heterogeneous structure. Ultrasonic piezoceramic-polymer composite transducer-dynamic behavior and effects of heterogeneous structure.
W. Huebner, M.R. Reidmeyer, J.W. Stevenson & L. Busse. (1994) Fabrication of 2-2 connectivity PZT/thermoplastic composites for high frequency linear arrays. Fabrication of 2-2 connectivity PZT/thermoplastic composites for high frequency linear arrays.
Q. M. Zhang, Wenwu Cao, H. Wang & L. E. Cross. (1993) Characterization of the performance of 1–3 type piezocomposites for low-frequency applications. Journal of Applied Physics 73:3, pages 1403-1410.
Crossref
David J. Waller & Ahmad Safari. (2005) Piezoelectric Lead Zirconate Titanate Ceramic Fiber/Polymer Composites. Journal of the American Ceramic Society 75:6, pages 1648-1655.
Crossref
W.A. Smith & B.A. Auld. (1991) Modeling 1-3 composite piezoelectrics: thickness-mode oscillations. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 38:1, pages 40-47.
Crossref
C.G. Oakley. (1990) The Development Of 1-3 Piezoelectric Composites And Its Impact On Medical Ultrasonic Imaging Transducer Design. The Development Of 1-3 Piezoelectric Composites And Its Impact On Medical Ultrasonic Imaging Transducer Design.
A. Shaulov, W.A. Smith, J. Zola & D. Dorman. (1989) Curved annular array transducers made from composite piezoelectric materials. Curved annular array transducers made from composite piezoelectric materials.
W.A. Smith. (1989) The role of piezocomposites in ultrasonic transducers. The role of piezocomposites in ultrasonic transducers.
W.A. Smith, R.C. Waag & D. Dalecki. (1988) Assessing the limits of ultrasonic focusing through tissue from scattering measurements. Assessing the limits of ultrasonic focusing through tissue from scattering measurements.
W.A. Smith, A.A. Shaulov & R.Y. Ting. (1988) Enhanced lateral electromechanical coupling in lead-titanate-rod/polymer piezoelectric composites. Enhanced lateral electromechanical coupling in lead-titanate-rod/polymer piezoelectric composites.

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