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Piezoelectrics composites

0–3 piezoelectric composites for large area hydrophones

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Pages 169-176 | Received 29 Aug 1988, Published online: 10 Feb 2011

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V.YU. TOPOLOV & C.R. BOWEN. (2004) High Piezoelectric Sensitivity Composites Based on Ferroelectric Ceramics. Integrated Ferroelectrics 63:1, pages 171-177.
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M.P. Wenger, P. Blanas, C.J. Dias, R.J. Shuford & O.K. Dasgupta. (1996) Ferroelectric ceramic/polymer composites and their applications. Ferroelectrics 187:1, pages 75-86.
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G.A. Lushcheikin. (1994) Elastic composite piezoelectric materials. Ferroelectrics 157:1, pages 415-420.
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J.A. Hossack & B.A. Auld. (1994) Design and modeling of 0:3 composite transducers. Ferroelectrics 156:1, pages 13-18.
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Huiru Wang, Jingyi Liu, Sorour Sadeghzade, Runsheng Hou & Hongyan Yuan. (2023) Improved corona discharge-based modified poling method for 0–3 PZT/PEGDA piezoelectric composites. Ceramics International 49:7, pages 11334-11343.
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Hamideh Khanbareh, Vitaly Yu. Topolov & Christopher R. BowenHamideh Khanbareh, Vitaly Yu. Topolov & Christopher R. Bowen. 2019. Piezo-Particulate Composites. Piezo-Particulate Composites 103 141 .
Huada Lian, Jian Qin & Karl F. Freed. (2018) Dielectric virial expansion of polarizable dipolar spheres. The Journal of Chemical Physics 149:16.
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Nithin Kundachira Subramani, Shilpa K. N., Sachhidananda Shivanna, Jagajeevan Raj B. M. & Siddaramaiah Hatna. 2018. Emergent Research on Polymeric and Composite Materials. Emergent Research on Polymeric and Composite Materials 139 157 .
Anjana Jain, Prashanth K. J., Asheesh Kr. Sharma, Arpit Jain & Rashmi P.N. (2015) Dielectric and piezoelectric properties of PVDF/PZT composites: A review. Polymer Engineering & Science 55:7, pages 1589-1616.
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Jun Kang, Peng Sheng Xie, Yuan Li, Jia Lin Zhu & Li Li. (2014) Development of Acoustic Emission Sensor Based on the 0-3 PZT/P(VDF-TFE) Piezoelectric Composite. Applied Mechanics and Materials 487, pages 58-62.
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Cary BaurDaniel J. ApoDeepam MauryaShashank PriyaWalter Voit. 2014. Polymer Composites for Energy Harvesting, Conversion, and Storage. Polymer Composites for Energy Harvesting, Conversion, and Storage 1 27 .
. 2009. Electromechanical Properties in Composite Based on Ferroelectrics. Electromechanical Properties in Composite Based on Ferroelectrics 43 99 .
S.V. Glushanin, V.Yu. Topolov & A.V. Krivoruchko. (2006) Features of piezoelectric properties of 0–3 PbTiO3-type ceramic/polymer composites. Materials Chemistry and Physics 97:2-3, pages 357-364.
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Xu Renxin, Chen Wen, Zhou Jing, Li Yueming & Sun Huajun. (2006) Dielectric and piezoelectric properties of 0-3 PZT/PVDF composite doped with polyaniline. Journal of Wuhan University of Technology-Mater. Sci. Ed. 21:1, pages 84-87.
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S V Glushanin & V Yu Topolov. (2005) A hierarchy of inclusions and electromechanical properties of 0–3 ceramic/polymer composites. Journal of Physics D: Applied Physics 38:14, pages 2460-2467.
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C.R. Bowen & V.Yu. Topolov. (2003) Piezoelectric sensitivity of PbTiO3-based ceramic/polymer composites with 0–3 and 3–3 connectivity. Acta Materialia 51:17, pages 4965-4976.
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Sidney B. Lang & Dilip K. Das-Gupta. 2001. Handbook of Advanced Electronic and Photonic Materials and Devices. Handbook of Advanced Electronic and Photonic Materials and Devices 1 55 .
Dilip K. Das-Gupta. 2000. Polymer Sensors and Actuators. Polymer Sensors and Actuators 109 147 .
F. Levassort, M. Lethiecq, R. Desmare & Tran-Huu-Hue. (1999) Effective electroelastic moduli of 3-3(0-3) piezocomposites. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 46:4, pages 1028-1034.
Crossref
M. P. Wenger & D. K. Das‐Gupta. (2004) Mixed connectivity composite material characterization for electroactive sensors. Polymer Engineering & Science 39:7, pages 1176-1188.
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John A. Chilton. 1999. Plastics for Electronics. Plastics for Electronics 243 291 .
F. Levassort, M. Lethiecq, C. Millar & L. Pourcelot. (1998) Modeling of highly loaded 0-3 piezoelectric composites using a matrix method. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 45:6, pages 1497-1505.
Crossref
M. P. Wenger, P. Blanas, R. J. Shuford & D. K. Das‐Gupta. (2004) Acoustic emission signal detection by ceramic/polymer composite piezoelectrets embedded in glass‐epoxy laminates. Polymer Engineering & Science 36:24, pages 2945-2954.
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F. Levassort, M. Lethiecq, T. Gomez, F. Montero de Espinosa, A. James, E. Ringgard, P. Hawkins & C.E. Millar. (1996) Modeling the effective properties of highly loaded 0-3 piezocomposites. Modeling the effective properties of highly loaded 0-3 piezocomposites.
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
G. A. Lushcheikin. (1995) Temperature dependence of the piezoelectric, mechanical, and dielectric characteristics of rubber-elastic piezoelectric composites. Measurement Techniques 38:6, pages 687-692.
Crossref
J. A. Chilton. 1995. Special Polymers for Electronics and Optoelectronics. Special Polymers for Electronics and Optoelectronics 221 255 .
Robert Y. Ting. (1994) Composite piezoelectric materials for transduction. Applied Acoustics 41:4, pages 325-335.
Crossref
C. Dias & D. K. Das-Gupta. (2011) Piezoelectric properties of 0-3 ceramic/polar polymer composites. MRS Proceedings 276.
Crossref
M.A. Williams, D.A. Hall & A.K. Wood. (1992) 0-3 piezoceramic-polymer composites prepared using thermoplastics and elastomers. 0-3 piezoceramic-polymer composites prepared using thermoplastics and elastomers.
Yuhuan Xu. 1991. Ferroelectric Materials and their Applications. Ferroelectric Materials and their Applications 329 362 .

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