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On the coupling effects of piezoelectricity and flexoelectricity in piezoelectric nanostructures

机译:压电纳米结构中压电与柔电的耦合效应

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摘要

Flexoelectricity is a novel kind of electromechanical coupling phenomenon that is prevalent in all solid dielectrics and usually of vital importance in nanostructures and soft materials. Although the fundamental theory of flexoelectric solids and related beam or plate theories were extensively studied in recent years, the coupling effect of flexoelectricity and piezoelectricity in piezoelectric nanostructures has not been completely clarified yet. In the present work, a geometrically nonlinear piezoelectric plate model is established with a focus on the coupling effect. The constitutive equations for piezoelectric plates are derived under both the electrically short-circuit and open-circuit conditions. It is found that due to the coupling between flexoelectricity and piezoelectricity, stretching-bending coupling stiffness arises in the homogeneous plate and its specific value relies on the applied electrical boundary conditions. The effects of the flexoelectric-piezoelectric coupling on the effective mechanical behavior and the electromechanical behavior of nanobeams and nanoplates are also discussed. The developed model and presented results are expected to benefit the design and analysis of piezoelectric and flexoelectric devices and systems.
机译:柔电是一种新型的机电耦合现象,普遍存在于所有固体电介质中,通常在纳米结构和软材料中至关重要。尽管近年来对挠性电固体的基本理论和相关的梁或板理论进行了广泛的研究,但压电纳米结构中的挠性电与压电的耦合作用尚未完全阐明。在目前的工作中,建立了以耦合效应为重点的几何非线性压电板模型。压电板的本构方程是在短路和开路条件下得出的。已经发现,由于挠性电与压电性之间的耦合,在均质板中出现了拉伸-弯曲耦合刚度,并且其比值取决于所施加的电边界条件。还讨论了柔电-压电耦合对纳米束和纳米板的有效力学行为和机电行为的影响。预期开发的模型和给出的结果将有利于压电和挠性电器件及系统的设计和分析。

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