4.5 Article

Flexoelectric effect on thickness-shear vibration of a rectangular piezoelectric crystal plate

期刊

MATERIALS RESEARCH EXPRESS
卷 8, 期 11, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/2053-1591/ac34b7

关键词

thickness-shear vibration; piezoelectric crystal; size effect; flexoelectric effect

资金

  1. National Natural Science Foundation of China [11702150]
  2. Zhejiang Natural Science Foundation [LY21A020003]
  3. Natural Science Foundation of Ningbo [202003N4015]
  4. Key Laboratory of Impact and Safety Engineering (Ningbo University), Ministry of Education [CJ202009]
  5. Technology Innovation 2025 Program of Municipality of Ningbo [2019B10122]

向作者/读者索取更多资源

This paper investigates the thickness-shear vibration of a rectangular piezoelectric crystal plate with consideration of the flexoelectric effect. The results indicate that the flexoelectric effect significantly impacts the vibration frequencies of thickness-shear modes, and the flexoelectric coefficients and length to thickness ratio also play a role in affecting the thickness-shear modes. This suggests that flexoelectricity should not be neglected in the design of small size piezoelectric resonators.
Thickness-shear (TSh) vibration of a rectangular piezoelectric crystal plate is studied with the consideration of flexoelectric effect in this paper. The developed theoretical model is based on the assumed displacement function which includes the anti-symmetric mode through thickness and symmetric mode in length. The constitutive equation with flexoelectricity, governing equations and boundary conditions are derived from the Gibbs energy density function and variational principle. For the effect of flexoelectricity, we only consider the shear strain gradient in the thickness direction so as to simply the mathematical model. Thus, two flexoelectric coefficients are used in the present model. The electric potential functions are also obtained for different electric boundary conditions. The present results clearly show that the flexoelectric effect has significant effect on vibration frequencies of thickness-shear modes of thin piezoelectric crystal plate. It is also found that the flexoelectric coefficients and length to thickness ratio have influence on the thickness-shear modes. The results tell that flexoelectricity cannot be neglected for design of small size piezoelectric resonators.

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