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Original Articles

Complete Characterization of Porous Piezoelectric Ceramics Properties Including Losses and Dispersion

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Pages 57-62 | Received 10 Oct 2006, Accepted 19 Feb 2007, Published online: 28 Oct 2011

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Read on this site (5)

I. A. Shvetsov, M. A. Lugovaya, E. I. Petrova, N. A. Shvetsova, A. N. Reznichenko & A. N. Rybyanets. (2022) Electromechanical losses and dispersion in textured piezoceramics based on layered bismuth-containing compositions. Ferroelectrics 591:1, pages 128-135.
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N. A. Shvetsova, M. A. Lugovaya, I. A. Shvetsov, A. P. Turygin, V. I. Pryakhina, V. Ya. Shur & A. N. Rybyanets. (2022) Microstructural features and complex electromechanical parameters of lead-free ferroelectric ceramics. Ferroelectrics 591:1, pages 136-142.
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A. N. Rybyanets, I. A. Shvetsov, E. I. Petrova, Yu. A. Kuprina, O. A. Bunina, M. A. Marakhovsky & O. E. Bryl. (2022) Anisotropy of electromechanical properties of layered bismuth-containing ferroelectric ceramics with a high degree of texture. Ferroelectrics 591:1, pages 113-120.
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A. A. Naumenko, M. A. Lugovaya, S. A. Shcherbinin & A. N. Rybyanets. (2015) Elastic Losses and Dispersion in Ceramic Matrix Composites. Ferroelectrics 484:1, pages 69-77.
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AndreyN. Rybyanets. (2011) Porous Piezoelectric Ceramics—A Historical Overview. Ferroelectrics 419:1, pages 90-96.
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Articles from other publishers (15)

Rakesh Kumar Haldkar, Alexander V. Cherpakov, Ivan A. Parinov & Vladislav E. Yakovlev. (2022) Comprehensive Numerical Analysis of a Porous Piezoelectric Ceramic for Axial Load Energy Harvesting. Applied Sciences 12:19, pages 10047.
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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 .
A. N. Rybyanets, A. V. Nasedkin, S. A. Shcherbinin, E. I. Petrova, N. A. Shvetsova, I. A. Shvetsov & M. A. Lugovaya. (2017) The finite-element simulation of low-frequency bimorph transducers for the diagnostics and activation of oil wells. Acoustical Physics 63:6, pages 737-743.
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Weijia Shi, Hui Zhao, Jie Ma & Yu Yao. (2016) Optimal working frequency of ultrasonic motors. Ultrasonics 70, pages 38-44.
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A. N. Rybyanets, A. A. Naumenko, N. A. Shvetsova, V. A. Khokhlova, O. A. Sapozhnikov & A. E. Berkovich. 2016. Advanced Materials. Advanced Materials 621 637 .
A. N. Rybyanets. 2016. Advanced Materials. Advanced Materials 603 620 .
A. N. Rybyanets. 2016. Advanced Materials. Advanced Materials 211 228 .
A. N. Rybyanets, G. M. Konstantinov, A. A. Naumenko, N. A. Shvetsova, D. I. Makar’ev & M. A. Lugovaya. (2015) Elastic, dielectric, and piezoelectric properties of ceramic lead zirconate titanate/α-Al2O3 composites. Physics of the Solid State 57:3, pages 527-530.
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A.A. Naumenko, S.A. Shcherbinin, D.I. Makariev & A.N. Rybyanets. (2015) Experimental Study of Relationships between Ultrasonic Attenuation and Dispersion for Ceramic Matrix Composite. Physics Procedia 70, pages 171-174.
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Andrey N. Rybyanets & Anastasia A. Naumenko. (2013) Nanoparticles Transport in Ceramic Matriсes: A Novel Approach for Ceramic Matrix Composites Fabrication. Journal of Modern Physics 04:08, pages 1041-1049.
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A. N. Rybyanets & A. A. Rybyanets. (2011) Ceramic piezocomposites: Modeling, technology, and characterization. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 58:9, pages 1757-1773.
Crossref
Andrey N. Rybyanets. (2011) Porous piezoceramics: theory, technology, and properties. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 58:7, pages 1492-1507.
Crossref
Andrey N. Rybyanets, Tamara V. Domashenkina & Anastasia A. Rybyanets. (2010) Complex material constants for PZT/PZT ceramic composites. Complex material constants for PZT/PZT ceramic composites.
Andrey N. Rybyanets & Anastasia A. Rybyanets. (2010) Losses and dispersion in ceramic piezocompozites. Losses and dispersion in ceramic piezocompozites.
Andrey Ryby, Andrey Nasedkin, Tamara Domashenkina, Anastasia Rybyanets & Maria Lugovaya. (2009) Ceramic piezocomposites modeling and fabrication. Ceramic piezocomposites modeling and fabrication.

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