4.6 Article

Analysis of surface effect and flexoelectric effect on the electromechanical responses of bilayered transversely isotropic rectangular micro-plate

期刊

JOURNAL OF APPLIED PHYSICS
卷 132, 期 22, 页码 -

出版社

AIP Publishing
DOI: 10.1063/5.0113870

关键词

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资金

  1. National Key Research and Development Program of China
  2. Key Research and Development Plan of Shandong Province of China
  3. Natural Science Fund of Shandong Province of China
  4. [2018YFB0703500]
  5. [2019JZZY010313]
  6. [2022CXGC010202]
  7. [2022CXGC010304]
  8. [ZR2022QA044]
  9. [2022PX089]

向作者/读者索取更多资源

A new model for a bilayered transversely isotropic piezoelectric rectangular micro-plate with a distributed load is developed to analyze the piezoelectric micromachined ultrasonic transducer. The model accounts for the surface effect and flexoelectricity effect and investigates the size-dependent electromechanical coupling behaviors. The results show that the normalized central deflection decreases as residual surface stress increases, with the surface effect being the main influencing factor for negative residual stress and flexoelectric effect becoming more crucial for positive residual stress when the thickness-to-length ratio exceeds approximately 25. Moreover, a stronger size dependence is observed for electrical potential and polarization when the thickness of the piezoelectric layer is less than about 40 nm.
A new model of a bilayered transversely isotropic piezoelectric rectangular micro-plate with a distributed load is developed on the basis of Kirchhoff's plate theory and the extended linear piezoelectricity theory to characterize the piezoelectric micromachined ultrasonic transducer. The model takes into account both the surface effect and the flexoelectricity effect. The governing equation at the simply supported boundary condition is derived according to the variation principle. Based on the new model, the size dependent electromechanical coupling behaviors of the bilayered piezoelectric rectangular micro-plate are investigated. Considering the flexoelectric effect and surface effect synchronously, the numerical result indicates that the size dependence of the normalized central deflection decreases as the residual surface stress increases. For negative residual stress, the surface effect is the main influencing factor. While for positive residual stress, the surface effect dominates only when the ratio of thickness to length is smaller than about 25; otherwise, the flexoelectric effect will be more crucial. Moreover, if the thickness of the piezoelectric layer is less than about 40 nm, the electrical potential and polarization show a stronger size dependence. These results will be helpful to design and manufacture a piezoelectric micromachined ultrasonic transducer.

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