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IssuesArchive of Issues2004-5pp.35-41

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V. M. Levin and A. G. Luchaninov, "Effective properties of matrix pyroelectric materials," Mech. Solids. 39 (5), 35-41 (2004)
Year 2004 Volume 39 Number 5 Pages 35-41
Title Effective properties of matrix pyroelectric materials
Author(s) V. M. Levin (Petrozavodsk)
A. G. Luchaninov (Petrozavodsk)
Abstract We consider composite materials of matrix type formed by a homogeneous component (matrix) with uniformly distributed particles of another component (inclusions). It is assumed that the materials of both components are perfectly elastic and possess pyroelectric properties. The effective field method is used for the determination of the effective pyroelectric, dielectric, piezoelectric, and thermoelastic characteristics of such materials. We find explicit analytical expressions for the effective characteristics of composites with a pyroelectric matrix reinforced by continuous cylindrical fibres.
References
1.  V. M. Levin, "The overall properties of piezoelectric matrix composite materials," in K. Z. Markov (Editor), Continuum Models and Discrete Systems. Proc. CMDS8., pp. 225-232, World Sci. Publ. Comp., Singapore, 1996.
2.  V. M. Levin, Th. Michelisch, and I. B. Sevostianov, "Spheroidal inhomogeneity in the transversely isotropic piezoelectric medium," Arch. Appl. Mech, Vol. 70, No. 10, pp. 673-693, 2000.
3.  S. K. Kanaun and V. M. Levin, Effective Field Method in Mechanics of Composites [in Russian], Izd-vo Petrozavodsk. Un-ta, Petrozavodsk, 1993.
4.  S. K. Kanaun and L. T. Kudryavtseva, Self-consistent Averaging Schemes in Matrix Composite Mechanics. Preprint No. 10 [in Russian], Filial NIIMASh AN SSSR, Leningrad, 1989.
5.  V. M. Levin, M. I. Rakovskaja, and W. S. Kreher, "The effective thermoelectroplastic properties of micro-inhomogeneous materials," Intern. J. Solids and Structures, Vol. 36, No. 18, pp. 2683-2695, 1999.
6.  W. S. Kreher, "Modelling effective thermo-electro-mechanical properties of multiphase piezoelectric composite materials," EUROMECH 373 Colloquium, Magdeburg, 1998.
7.  B. Jaffe, W. R. Cook, and H. Jaffe, Piezoelectric Ceramics [Russian translation], Mir, Moscow, 1974.
8.  L. S. Kremenchugskii and O. V. Roitsina, Pyroelectric Receivers of Radiation [in Russian], Kiev, Naukova Dumka, 1979.
9.  F. Jona and G. Shirane, Ferroelectric Crystals [Russian translation], Mir, Moscow, 1965.
Received 14 February 2002
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