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Piezoelectrics

Structure of ferroelectric materials for power transducers

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Pages 127-136 | Received 29 Aug 1988, Published online: 10 Feb 2011

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M. Yessari, A. Hajjaji, M. Rguiti, S. Aboubakr & A. Arbaoui. (2016) Elaboration and characterization of BZT lead-free ceramic prepared in chemical way and with the addition of a sintering aid (LBCU). Molecular Crystals and Liquid Crystals 628:1, pages 130-138.
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J.F. Scott, David Galt, JohnC. Price, JamesA. Beall, RonaldH. Ono, CarlosA. Paz de Araujo & L.D. McMillan. (1995) A model of voltage-dependent dielectric losses for ferroelectric MMIC devices. Integrated Ferroelectrics 6:1-4, pages 189-203.
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Marie Madeleine Guillemot-amadei, Paul Gonnard & Michel Troccaz Insa. (1992) PmP116. Studies on flaws in PZT ceramics used in underwater detection transducers. Ferroelectrics 134:1, pages 169-174.
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Roland Briot, Paul Gonnard & Michel Troccaz. (1992) Comparison of PZT ceramics based on the frequency dependence of conductance and a grain boundary - domain walls model. Ferroelectrics 127:1, pages 155-160.
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Articles from other publishers (4)

Lian-Xing He, Ming Gao, Cheng-En Li, Wei-Ming Zhu & Han-Xue Yan. (2001) Effects of Cr2O3 addition on the piezoelectric properties and microstructure of PbZrxTiy(Mg1/3Nb2/3)1−x−yO3 ceramics. Journal of the European Ceramic Society 21:6, pages 703-709.
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D. Audigier, L. Eyraud, P. Eyraud, F. Eyraud, N. Glissa, P. Gonnard, M. Troccaz & M. Sprumont. (1994) Typical characteristics of a piezoelectric ceramic material for squeeze igniters. Typical characteristics of a piezoelectric ceramic material for squeeze igniters.
R. Briot, P. Gonnard & M. Troccaz. (1991) Studies on dielectric and mechanical properties of PZT doped ceramics, using a model of losses. Studies on dielectric and mechanical properties of PZT doped ceramics, using a model of losses.
Lucien Eyraud, Paul Gonnard & Bernard Claudel. (2005) Causes of Instability and Aging of Piezoelectric Power Ceramics. Journal of the American Ceramic Society 73:7, pages 1854-1856.
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