DocumentCode :
2981376
Title :
Piezoelectric anisotropy - phase transition relations in perovskite single crystals
Author :
Budimir, Marko ; Damjanovic, Dragan ; Setter, Nava
Author_Institution :
Ceramics Lab., Swiss Fed. Inst. of Technol., Lausanne, Switzerland
fYear :
2004
fDate :
23-27 Aug. 2004
Firstpage :
110
Lastpage :
113
Abstract :
The orientation dependence of the longitudinal piezoelectric coefficient is investigated as a function of temperature in BaTiO3 and PbTiO3 crystals using Landau-Ginsburg-Devonshire theory. We show that a presence of the ferroelectric - ferroelectric phase transitions in BaTiO3 leads to an enhanced piezoelectric longitudinal response along nonpolar directions. The reason for this is the abrupt increase of the shear piezoelectric coefficients in the vicinity of a FE - FE phase transition temperature. In PbTiO3, which does not exhibit such phase transitions, the shear piezoelectric effect is weak and the longitudinal piezoelectric coefficient has its maximum along the polar axis at all temperatures. These results can be generalized to include phase transitions induced by electric-field and composition variation and are valid for all perovskite materials. Further, using Landau-Ginzburg-Devonshire theory and tetragonal BaTiO3 as an example, we demonstrate that a strong electric bias fields applied anti-parallel to the spontaneous polarization may lead to a large enhancement of piezoelectric properties in monodomain perovskite crystals. The enhancement is due to the field-induced dielectric softening of the crystal.
Keywords :
barium compounds; dielectric polarisation; electric domains; ferroelectric materials; ferroelectric transitions; lead compounds; piezoelectric materials; piezoelectricity; BaTiO3; Landau-Ginsburg-Devonshire theory; PbTiO3; composition variation; electric-field-induced phase transitions; ferroelectric - ferroelectric phase transition; field-induced dielectric softening; longitudinal piezoelectric coefficient; monodomain perovskite crystals; nonpolar directions; perovskite single crystals; phase transition; piezoelectric anisotropy; shear piezoelectric coefficients; spontaneous polarization; Anisotropic magnetoresistance; Composite materials; Crystalline materials; Crystals; Dielectric materials; Ferroelectric materials; Iron; Piezoelectric effect; Piezoelectric polarization; Temperature dependence;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applications of Ferroelectrics, 2004. ISAF-04. 2004 14th IEEE International Symposium on
ISSN :
1099-4734
Print_ISBN :
0-7803-8410-5
Type :
conf
DOI :
10.1109/ISAF.2004.1418349
Filename :
1418349
Link To Document :
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