Microstructure of BaTiO3-Bi(Mg1/2Ti1/2)O3-BiFeO3 Piezoelectric Ceramics

被引:0
|
作者
Yabuta, Hisato [1 ]
Shimada, Mikio [1 ]
Watanabe, Takayuki [1 ]
Hayashi, Jumpei [1 ]
Kubota, Makoto [1 ]
Miura, Kaoru [1 ]
Fukui, Tetsuro [1 ]
Fujii, Ichiro [2 ]
Wada, Satoshi [2 ]
机构
[1] Canon Inc, Corporate R&D Headquarters, Ota, Tokyo 1468501, Japan
[2] Univ Yamanashi, Interdisciplinary Grad Sch Med & Engn, Kofu, Yamanashi 4008510, Japan
关键词
LEAD-FREE PIEZOCERAMICS; CRYSTAL-STRUCTURE; BARIUM-TITANATE; PEROVSKITE;
D O I
10.1143/JJAP.51.09LD04
中图分类号
O59 [应用物理学];
学科分类号
摘要
The dependence of the ferroelectric and piezoelectric properties of (1 - x)(0.33BaTiO(3)-0.67BiFeO(3))-xBi(Mg1/2Ti1/2)O-3 (x = 0, 0.05, 0.10, and 0.15) on Bi(Mg1/2Ti1/2)O-3 content x associated with microstructural changes is studied. From the behaviour of electric field-induced polarization and strain, polarization switching and depolarizing become easier as Bi(Mg1/2Ti1/2)O-3 content x increases. Remanent polarization and dielectric constant decrease, while polarization saturation field increases with increasing x. Microstructural observation reveals that Bi(Mg1/2Ti1/2)O-3 addition enhances the compositional fluctuation of BaTiO3/BiFeO3 ratio, which probably creates a nanometre-sized domain region with slightly BaTiO3-rich composition. Since this nanometre-sized domain may cause relatively large responses of polarization and strain to the applied electric field, an appropriate amount of Bi(Mg1/2Ti1/2)O-3 enhances the electric field-induced strain, resulting in the largest piezoelectric response at x = 0.05. However, excessive Bi(Mg1/2Ti1/2)O-3 degrades polarization and strain characteristics, because a number of Ba(Fe1-x-Mgx/2Tix/2)(12)O-19 grains are created as a secondary phase and cause the segregation of excess bismuth oxide phases with low dielectric constant into the boundaries of the ferroelectric/piezoelectric grains. (c) 2012 The Japan Society of Applied Physics
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页数:5
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