首页> 外文会议>Fundamental Physics of Ferroelectrics 2002 Workshop, Feb 3-6, 2002, Washington DC >A Mesoscopic Electromechanical Theory of Ferroelectric Films and Ceramics
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A Mesoscopic Electromechanical Theory of Ferroelectric Films and Ceramics

机译:铁电薄膜和陶瓷的介观机电理论

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We present a multi-scale modelling framework to predict the effective electromechanical behavior of ferroelectric ceramics and thin films. This paper specifically focuses on the mesoscopic scale and models the effects of domains and domain switching taking into account intergranular constraints. Starting from the properties of the single crystal and the pre-poling granular texture, the theory predicts the domain patterns, the post-poling texture, the saturation polarization, saturation strain and the electromechanical moduli. We demonstrate remarkable agreement with experimental data. The theory also explains the superior electromechanical property of PZT at the morphotropic phase boundary. The paper concludes with the application of the theory to predict the optimal texture for enhanced electromechanical coupling factors and high-strain actuation in selected materials.
机译:我们提出了一个多尺度的建模框架,以预测铁电陶瓷和薄膜的有效机电行为。本文特别关注介观尺度,并考虑了晶间约束,对域和域切换的影响进行建模。该理论从单晶和极化前的颗粒织构的特性出发,预测了畴图案,极化后的织构,饱和极化,饱和应变和机电模量。我们证明了与实验数据的显着一致性。该理论还解释了PZT在同相相界处的优越的机电性能。本文以该理论的应用结束,以预测在选定材料中增强机电耦合因子和高应变驱动的最佳织构。

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