Title :
Piezoelectric ceramic disks with thickness-graded material properties
Author :
Lee, Peter C Y ; Yu, Jiun-Der ; Li, Xiaoping ; Shih, Wei-Heng
Author_Institution :
Dept. of Civil Eng. & Oper. Res., Princeton Univ., NJ, USA
Abstract :
A system of two-dimensional, first-order equations for electroded piezoelectric crystal plates with general symmetry and thickness-graded material properties recently was deduced from the three-dimensional equations of linear piezoelectricity. These equations are simplified for the two limiting cases of thickness-graded piezoelectric properties, i.e., the homogeneous plate and bimorph of piezoelectric ceramics. Closed-form solutions are obtained from these reduced equations for the flexural and thickness-shear vibrations and static response of bimorph disks as well as for the extensional and thickness-stretch vibrations of homogeneous disks. Frequency spectra and modes are computed and examined. Resonance frequencies for both homogeneous and bimorph disks of PZT-857 are computed and measured. The comparison of the results shows that the agreement is close.
Keywords :
piezoceramics; vibrations; PZT; PZT-857; PbZrO3TiO3; bimorph; flexural vibration; homogeneous plate; linear piezoelectricity; piezoelectric ceramic disk; symmetry; thickness shear vibration; thickness-graded material properties; three-dimensional equation; two-dimensional first-order equation; Ceramics; Closed-form solution; Crystalline materials; Equations; Frequency measurement; Material properties; Piezoelectric materials; Piezoelectricity; Resonance; Resonant frequency;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on