Title :
SH Waves in a Circular Cylindrical Layered Piezoelectric Structure with Initial Stress
Author :
Du, Jianke ; Jin, Xiaoying ; Wang, Ji ; Zhou, Yunying
Author_Institution :
Sch. of Eng., Ningbo Univ., Zhejiang
Abstract :
Propagation of SH waves in a circular cylindrical layered piezoelectric structure with initial stress is investigated analytically, the governing equations of the coupled waves are reduced to Bessel equation and Laplace equation. The boundary conditions are assumed that the displacements, shear stress, electric potential, and electric displacements are continuous across the interface between the layer and the substrate together with the traction free at the surface of the layer. The electrically open and short conditions at cylindrical surface are adopted to solve the problem. The phase velocity is numerically calculated for the electric open and short cases, respectively, for different thickness of the layer and wave number. The effect of the initial stress on the phase velocity and the electromechanical coupling factor are discussed in detail for piezoelectric ceramics PZT-5H. The authors find that the initial stress has an important effect on the SH wave propagation in a circular cylindrical layered structure
Keywords :
Bessel functions; Laplace equations; Love waves; internal stresses; piezoceramics; wave propagation; Bessel equation; Laplace equation; Pb(ZrTi)O3; SH waves propagation; circular cylindrical structure; electric displacements; electromechanical coupling factor; initial stress; layered piezoelectric structure; piezoelectric ceramics; Acoustic propagation; Acoustic sensors; Boundary conditions; Electric potential; Laplace equations; Piezoelectric devices; Residual stresses; Substrates; Surface acoustic wave devices; Surface acoustic waves;
Conference_Titel :
International Frequency Control Symposium and Exposition, 2006 IEEE
Conference_Location :
Miami, FL
Print_ISBN :
1-4244-0074-0
Electronic_ISBN :
1-4244-0074-0
DOI :
10.1109/FREQ.2006.275358