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Origin of the large strain response in (K0.5Na0.5)NbO3-modified (Bi0.5Na0.5)TiO3-BaTiO3 lead-free piezoceramics
被引:563
作者:
Jo, Wook
[1
]
Granzow, Torsten
[1
]
Aulbach, Emil
[1
]
Roedel, Juergen
[1
]
Damjanovic, Dragan
[2
]
机构:
[1] Tech Univ Darmstadt, Inst Mat Sci, D-64287 Darmstadt, Germany
[2] Ecole Polytech Fed Lausanne, Ceram Lab, CH-1015 Lausanne, Switzerland
关键词:
FREE PIEZOELECTRIC CERAMICS;
PHASE-TRANSITION;
NA0.5BI0.5TIO3;
PZT;
SYSTEM;
D O I:
10.1063/1.3121203
中图分类号:
O59 [应用物理学];
学科分类号:
摘要:
The mechanism of the giant unipolar strain recently observed in a lead-free piezoceramic, 0.92(Bi0.5Na0.5)TiO3-0.06BaTiO(3)-0.02(K0.5Na0.5)NbO3 [S.-T. Zhang, A. B. Kounga, E. Aulbach, H. Ehrenberg, and J. Rodel, Appl. Phys. Lett. 91, 112906 (2007) was investigated. The validity of the previously proposed mechanism that the high strain comes both from a significant volume change during the field-induced phase transition, from an antiferroelectric to a ferroelectric phase and the domain contribution from the induced ferroelectric phase was examined. Monitoring the volume changes from the simultaneously measured longitudinal and transverse strains on disk-shaped samples showed that the phase transition in this specific material does not involve any notable volume change, which indicates that there is little contribution from a volume change due to the phase transition to the total strain response. Temperature dependent hysteresis measurements on unpoled samples of a nearby ferroelectric composition, 0.93(Bi0.5Na0.5)TiO3-0.06BaTiO(3) -0.01(K0.5Na0.5)NbO3 demonstrated that the origin of the large strain is due to the presence of a nonpolar phase that brings the system back to its unpoled state once the applied electric field is removed, which leads to a large unipolar strain. (C) 2009 American Institute of Physics. [DOI: 10.1063/1.3121203]
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