DocumentCode :
746703
Title :
SH wave propagation in piezoelectric coupled plates
Author :
Wang, Quan
Author_Institution :
Dept. of Civil Eng., Nat. Univ. of Singapore, Singapore
Volume :
49
Issue :
5
fYear :
2002
fDate :
5/1/2002 12:00:00 AM
Firstpage :
596
Lastpage :
603
Abstract :
The propagation of shear horizontal (SH) wave in a piezoelectric coupled plate is investigated in this paper. Full account is taken of the piezoelectric coupling effect to the isotropic metal core in the mathematical model. One of the applications of this research is in the damage detection of the host metal structure from the wave propagation signal excited by the piezoelectric layer which is surface bonded on the surface of a metal core. This research is distinct from the previous works on SH propagation in piezoelectric structures because the piezoelectric materials were used as the core structure in the previous studies, and the potential of the studies was mainly on time-delay devices. The dispersive characteristics and the mode shapes of the transverse displacement and the electric potential of the piezoelectric layer are theoretically derived. The results from numerical simulations show that the phase velocity of the plate structure tends to the bulk shear wave velocity of the host metal core at high wave number when the shear wave velocity of host plate is larger than that of PZT bonded on it. Furthermore, there are three asymptotic solutions of wave propagation when the shear wave velocity of the host plate is smaller than that of PZT. The mode shape of the electric potential of the piezoelectric layer changes from the quadratic shape at lower wave number and with thinner piezoelectric layer to the shape with more zero nodes at higher wave number and with thicker piezoelectric layer. These findings are significant in the application of wave propagation in piezoelectric coupled structures.
Keywords :
dispersion (wave); elastic waves; electric potential; materials testing; numerical analysis; piezoelectric materials; wave propagation; PZT; PbZrO3TiO3; SH wave propagation; bulk shear wave velocity; damage detection; dispersive characteristics; electric potential; host metal core; host metal structure; host plate shear wave velocity; isotropic metal core; mathematical model; mode shapes; numerical simulations; piezoelectric coupled plates; piezoelectric coupled structures; piezoelectric coupling effect; piezoelectric layer electric potential; piezoelectric materials; piezoelectric structures; plate structure phase velocity; quadratic mode shape; shear horizontal wave propagation; surface bonded piezoelectric layer; time-delay devices; transverse displacement; wave number; wave propagation signal excitation; zero nodes; Acoustic propagation; Bonding; Dispersion; Electric potential; Face detection; Mathematical model; Monitoring; Piezoelectric materials; Shape; Surface waves; Aluminum; Ceramics; Computer Simulation; Crystallography; Electromagnetic Fields; Gold; Lead; Models, Theoretical; Sensitivity and Specificity; Steel; Titanium; Transducers; Zirconium;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2002.1002458
Filename :
1002458
Link To Document :
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