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Original Articles

Effective properties of a transversely isotropic piezocomposite with cylindrical inclusions

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Pages 115-126 | Received 28 Oct 1988, Published online: 10 Feb 2011

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Raúl Guinovart-Díaz, Reinaldo Rodríguez-Ramos, Julián Bravo-Castillero & Federico J. Sabina. (2003) Modeling of Three-Phase Fibrous Composite Using the Asymptotic Homogenization Method. Mechanics of Advanced Materials and Structures 10:4, pages 319-333.
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Jiang Yu Li & MartinL. Dunn. (2001) Variational bounds for the effective moduli of heterogeneous piezoelectric solids. Philosophical Magazine A 81:4, pages 903-926.
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Articles from other publishers (29)

Guannan Wang, Weijian Wang, Cheng Liu, Weiqiu Chen & Yue Mei. (2021) Extended Locally Exact Homogenization Theory for Effective Coefficients and Localized Responses of Piezoelectric Composites. Advanced Engineering Materials 24:5, pages 2101194.
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Houssein Nasser, Sandra Porn, Yao Koutsawa, Gaetano Giunta & Salim Belouettar. (2016) Optimal design of a multilayered piezoelectric transducer based on a special unit cell homogenization method. Acta Mechanica 227:7, pages 1837-1847.
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A.A. Kutsenko, A.L. Shuvalov & A.N. Norris. (2015) Effective antiplane shear wave speed in 2D periodic piezoelectric crystals. International Journal of Engineering Science 88, pages 29-39.
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Biao WangBiao Wang. 2013. Mechanics of Advanced Functional Materials. Mechanics of Advanced Functional Materials 97 146 .
Qing-Hua QinQing-Hua Qin. 2013. Advanced Mechanics of Piezoelectricity. Advanced Mechanics of Piezoelectricity 53 108 .
Z.H. Tong, S.H. Lo, C.P. Jiang & Y.K. Cheung. (2008) An exact solution for the three-phase thermo-electro-magneto-elastic cylinder model and its application to piezoelectric–magnetic fiber composites. International Journal of Solids and Structures 45:20, pages 5205-5219.
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Qing-Hua Qin & Qing-Sheng Yang. 2009. Macro-Micro Theory on Multifield Coupling Behavior of Heterogeneous Materials. Macro-Micro Theory on Multifield Coupling Behavior of Heterogeneous Materials 279 316 .
X. D. Wang & L. Y. Jiang. (2005) The effective electroelastic property of cracked piezoelectric media. Acta Mechanica 177:1-4, pages 97-113.
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X.D. Wang & L.Y. Jiang. (2003) The effective electroelastic property of piezoelectric media with parallel dielectric cracks. International Journal of Solids and Structures 40:20, pages 5287-5303.
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Brett A. Bednarcyk. (2003) An inelastic micro/macro theory for hybrid smart/metal composites. Composites Part B: Engineering 34:2, pages 175-197.
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N. Fakri, L. Azrar & L. El Bakkali. (2003) Electroelastic behavior modeling of piezoelectric composite materials containing spatially oriented reinforcements. International Journal of Solids and Structures 40:2, pages 361-384.
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Valery M. Levin, Thomas M. Michelitsch & Huajian Gao. (2002) Propagation of electroacoustic waves in the transversely isotropic piezoelectric medium reinforced by randomly distributed cylindrical inhomogeneities. International Journal of Solids and Structures 39:19, pages 5013-5051.
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Ping Tan & Liyong Tong. (2002) Modeling for the electro-magneto-thermo-elastic properties of piezoelectric-magnetic fiber reinforced composites. Composites Part A: Applied Science and Manufacturing 33:5, pages 631-645.
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B. Jiang, D.N. Fang & K.C. Hwang. (2001) Domain switching and non-linear coupling of ferroelectric composites. Theoretical and Applied Fracture Mechanics 36:3, pages 203-218.
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Fang Daining, Ai Kah Soh & Liu Jinxi. (2001) Electromechanical deformation and fracture of piezoelectric/ferroelectric materials. Acta Mechanica Sinica 17:3, pages 193-213.
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Federico J. Sabina, Reinaldo Rodrı́guez-Ramos, Julián Bravo-Castillero & Raúl Guinovart-Dı́az. (2001) Closed-form expressions for the effective coefficients of a fibre-reinforced composite with transversely isotropic constituents. II: Piezoelectric and hexagonal symmetry. Journal of the Mechanics and Physics of Solids 49:7, pages 1463-1479.
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C.P. Jiang, Z.H. Tong & Y.K. Cheung. (2001) A generalized self-consistent method for piezoelectric fiber reinforced composites under antiplane shear. Mechanics of Materials 33:5, pages 295-308.
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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.
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JiangYu Li & Martin L. Dunn. (2001) Viscoelectroelastic behavior of heterogeneous piezoelectric solids. Journal of Applied Physics 89:5, pages 2893-2903.
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Bing Jiang, Dai-Ning Fang & Keh-Chih Hwang. (1999) A unified model for piezocomposites with non-piezoelectric matrix and piezoelectric ellipsoidal inclusions. International Journal of Solids and Structures 36:18, pages 2707-2733.
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J.Y. Li & M.L. Dunn. (1999) Analysis of microstructural fields in heterogeneous piezoelectric solids. International Journal of Engineering Science 37:6, pages 665-685.
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Tony Mahut, Amen Agbossou & Joseph Pastor. (2016) Dynamic Analysis of Piezoelectric Fiber Composite in an Active Beam Using Homogenization and Finite Element Methods. Journal of Intelligent Material Systems and Structures 9:12, pages 1009-1016.
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Jiang Bing, Fang Daining & Hwang Kehchih. (1997) The effective properties of piezocomposites, part II: The effective electroelastic moduli. Acta Mechanica Sinica 13:4, pages 347-354.
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Julian Bravo Castillero, Raul Guinovart Diaz, Jose A. Otero Hernandez & Reinaldo Rodriguez Ramos. (1997) Electromechanical properties of continuous fibre-reinforced piezoelectric composites. Mechanics of Composite Materials 33:5, pages 475-482.
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S.W. Yu & Q.H. Qin. (1996) Damage analysis of thermopiezoelectric properties: Part II. Effective crack model. Theoretical and Applied Fracture Mechanics 25:3, pages 279-288.
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Martin L. Dunn. (2016) A Theoretical Framework for the Analysis of Thermoelectroelastic Heterogeneous Media with Applications. Journal of Intelligent Material Systems and Structures 6:2, pages 255-265.
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. (1997) An analysis of piezoelectric composite materials containing ellipsoidal inhomogeneities. Proceedings of the Royal Society of London. Series A: Mathematical and Physical Sciences 443:1918, pages 265-287.
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Martin L. Dunn. (1993) Micromechanics of coupled electroelastic composites: Effective thermal expansion and pyroelectric coefficients. Journal of Applied Physics 73:10, pages 5131-5140.
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M.L. Dunn & M. Taya. (1993) Micromechanics predictions of the effective electroelastic moduli of piezoelectric composites. International Journal of Solids and Structures 30:2, pages 161-175.
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