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Regular papers

Interpenetrating PZT/polymer composites for hydrophones: Models and experiments

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Pages 317-332 | Received 24 Mar 2001, Published online: 09 Mar 2011

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V. Yu. Topolov, S. V. Glushanin & C. R. Bowen. (2005) Piezoelectric response of porous ceramic and composite materials based on Pb(Zr,Ti)O3: experiment and modelling. Advances in Applied Ceramics 104:6, pages 300-305.
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H. KARA, R. RAMESH, R. STEVENS, N. JAYASUNDERE, V. HUMPHREY & C.R. BOWEN. (2004) Hydrophone Arrays Assembled from PZT Ceramic Foams. Integrated Ferroelectrics 63:1, pages 201-206.
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H. Kara, A. Perry, R. Stevens & C. R. Bowen. (2002) Modelling of 3–3 piezocomposites for hydrophones. British Ceramic Transactions 101:4, pages 139-142.
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Articles from other publishers (13)

Jiang Li, Mingyang Yan, Yan Zhang, Zhouyao Li, Zhida Xiao, Hang Luo, Xi Yuan & Dou Zhang. (2022) Optimization of polarization direction on 3D printed 3-3 piezoelectric composites for sensing application. Additive Manufacturing 58, pages 103060.
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Tutu Sebastian, Miriam Bach, Andreas Geiger, Tony Lusiola, Lucjan Kozielski & Frank Clemens. (2021) Investigation of Electromechanical Properties on 3-D Printed Piezoelectric Composite Scaffold Structures. Materials 14:20, pages 5927.
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Chris R. Bowen, Mengying Xie, Yan Zhang, Vitaly Yu. Topolov & Chaoying Wan. 2018. Ferroelectric Materials for Energy Applications. Ferroelectric Materials for Energy Applications 203 229 .
Nafiseh Sharifi Olyaei, Mohammad Masoud Mohebi & Reza Kaveh. (2017) Directional properties of ordered 3-3 piezocomposites fabricated by sacrificial template. Journal of the American Ceramic Society 100:4, pages 1432-1439.
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Ya-Yun Li, Long-Tu Li & Bo Li. (2015) Direct ink writing of 3–3 piezoelectric composite. Journal of Alloys and Compounds 620, pages 125-128.
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Vitaly Yu. Topolov, Paolo Bisegna & Christopher R. BowenVitaly Yu. Topolov, Paolo Bisegna & Christopher R. Bowen. 2014. Piezo-Active Composites. Piezo-Active Composites 1 23 .
E. S. Nehru. (2012) Axisymmetric Vibration of Piezo-Lemv Composite Hollow Multilayer Cylinder. International Journal of Mathematics and Mathematical Sciences 2012, pages 1-12.
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. 2009. Electromechanical Properties in Composite Based on Ferroelectrics. Electromechanical Properties in Composite Based on Ferroelectrics 101 121 .
. 2009. Electromechanical Properties in Composite Based on Ferroelectrics. Electromechanical Properties in Composite Based on Ferroelectrics 11 41 .
Seung-Ho Lee, Shin-Hee Jun, Hyoun-Ee Kim & Young-Hag Koh. (2007) Fabrication of Porous PZT?PZN Piezoelectric Ceramics With High Hydrostatic Figure of Merits Using Camphene-Based Freeze Casting. Journal of the American Ceramic Society 90:9, pages 2807-2813.
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B. Praveenkumar, H. H. Kumar & D. K. Kharat. (2006) Study on microstructure, piezoelectric and dielectric properties of 3-3 porous PZT composites. Journal of Materials Science: Materials in Electronics 17:7, pages 515-518.
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R. Ramesh, H. Kara & C.R. Bowen. (2004) Characteristics of piezoceramic and 3–3 piezocomposite hydrophones evaluated by finite element modelling. Computational Materials Science 30:3-4, pages 397-403.
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C.R Bowen, A Perry, A.C.F Lewis & H Kara. (2004) Processing and properties of porous piezoelectric materials with high hydrostatic figures of merit. Journal of the European Ceramic Society 24:2, pages 541-545.
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