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首页> 外文期刊>Applied Physics Letters >Elastic response of (1 − x)Ba(Ti0.8Zr0.2)O3 – x(Ba0.7Ca0.3)TiO3 (x = 0.45–0.55) and the role of the intermediate orthorhombic phase in enhancing the piezoelectric coupling
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Elastic response of (1 − x)Ba(Ti0.8Zr0.2)O3 – x(Ba0.7Ca0.3)TiO3 (x = 0.45–0.55) and the role of the intermediate orthorhombic phase in enhancing the piezoelectric coupling

机译:(1 − x)Ba(Ti 0.8 Zr 0.2 )O 3 – x(Ba 0.7 Ca 0.3 )TiO 3 (x = 0.45-0.55)和中间正交相在增强压电耦合中的作用

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摘要

The elastic response of (Ba,Ca)(Ti,Zr)O at compositions where the piezoelectric effect is maximized has been measured by different methods between 1 Hz and 250 kHz and compared with that of PZT at the middle of its morphotropic phase boundary. In all cases, the compliance is peaked at the border between the tetragonal (T) and the orthorhombic (O) phases, intermediate between the T and the low-temperature rhombohedral phase. The anomalies do not exhibit dependence on frequency and their relative amplitude is 200–300 times larger than the losses, demonstrating that they are intrinsic rather than due to the domain wall motion. This also demonstrates the role of an intermediate O or monoclinic phase in enhancing the transverse instability and piezoelectric coupling at a (morphotropic) phase boundary between R and T phases.
机译:通过在1 methodsHz和250 kHz之间的不同方法测量了(Ba,Ca)(Ti,Zr)O在压电效应最大化的组成下的弹性响应,并将其与同相相界中间的PZT进行了比较。在所有情况下,顺应性在四方相(T)和正交相(O)的边界处达到顶峰,介于T和低温菱形面相之间。异常不表现出对频率的依赖性,它们的相对振幅是损耗的200-300倍,表明它们是固有的,而不是由于畴壁运动引起的。这也证明了中间O相或单斜晶相在增强R和T相之间(同相)相界处的横向不稳定性和压电耦合中的作用。

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