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Factors influencing the piezoelectric behaviour of PZT and other “morphotropic phase boundary” ferroelectrics

机译:影响PZT和其他“同相相界”铁电体压电行为的因素

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摘要

Recent studies of the mechanism of piezoelectricity in PZT and related materials are reviewed and complemented by new analyses based on the Landau-Ginzburg-Devonshire theory of ferroelectricity. Particular attention is given to the nature of the morphotropic phase boundary between the tetragonal and rhombohedral perovskite phases and the accompanying peak in the piezoelectric coefficient. The importance of the changes in angular dependence of single crystal piezoelectric coefficients as a function of composition is highlighted together with the concept of field-induced rotation of the polarization in the (110) plane. It is shown that introducing the tendency to form monoclinic phases enhances this phenomenon. The model that the monoclinic phase in PZT is due to the condensation of local disorder in the polar cation displacements from the macroscopic tetragonal and rhombohedral phases is examined in some detail using statistical analyses of the Zr/Ti conformation. Whilst the concept of monoclinic nano-domains is not inconsistent with statistically random distributions, it is argued that some ordering of the B-site cations may be required to enable the transformation to a macroscopically observable phase. The implications of this model on the contribution of polarization rotation to piezoelectricity in PZT are discussed.
机译:基于Landau-Ginzburg-Devonshire铁电理论的新分析对PZT及其相关材料中的压电机理的最新研究进行了回顾和补充。特别注意四方和菱面钙钛矿相之间的变质相边界的性质,以及伴随的压电系数峰。单晶压电系数的角度依赖性变化随成分变化的重要性以及(110)平面中极化引起的场旋转概念都得到了强调。结果表明,引入形成单斜晶相的趋势可以增强这种现象。使用Zr / Ti构象的统计分析,对PZT中的单斜晶相是由于宏观四方相和菱面体相的极性阳离子位移中的局部无序凝结而引起的模型进行了详细研究。虽然单斜晶纳米域的概念与统计学上的随机分布并不矛盾,但有人认为,可能需要对B位阳离子进行某些排序,才能实现向宏观可观察相的转化。讨论了该模型对极化旋转对PZT中压电性的影响。

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  • 来源
    《Journal of Materials Science》 |2006年第1期|13-25|共13页
  • 作者

    Andrew J. Bell;

  • 作者单位

    Institute for Materials Research University of Leeds;

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  • 原文格式 PDF
  • 正文语种 eng
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