DocumentCode :
1784253
Title :
Comparison between two different analytical solutions and a horizontal shear wave propagating in a functionally graded piezoelectric-layered structure
Author :
Qing Zhang ; Xiao-shan Cao ; Yan Ru
Author_Institution :
Dept. of Eng. Mech., Xi´an Univ. of Technol., Xi´an, China
fYear :
2014
fDate :
Oct. 30 2014-Nov. 2 2014
Firstpage :
370
Lastpage :
374
Abstract :
We study the horizontal shear (SH) wave problem propagating in a functionally graded piezoelectric material (FGPM) layered structure to compare the Wentzel-Kramers-Brillouin (WKB) method with the power series method. We establish coupled governing equations on the basis of elastodynamics theory. Both the WKB and power series methods are employed to solve the second-order variation coefficient equations. The dispersive curves of the SH wave in an FGPM layered structure are illustrated. Different modes, including the surface damage model and artificial FGPM model, are considered. Analytical and numerical results show that the artificial FGPM model can be solved by both the WKB and power series methods, whereas the surface damage model can be solved by the power series technique only. The WKB method can obtain only several points and not the complete curves in the surface damage model.
Keywords :
WKB calculations; elastic waves; elastodynamics; functionally graded materials; piezoelectric materials; series (mathematics); Wentzel-Kramers-Brillouin method; analytical solutions; artificial functionally graded piezoelectric material model; coupled equations; dispersive curves; elastodynamics theory; functionally graded piezoelectric material layered structure; horizontal shear wave problem; power series method; second-order variation coefficient equations; surface damage model; Acoustic waves; Dispersion; Equations; Materials; Mathematical model; Numerical models; Piezoelectricity; Functionally graded piezoelectric material; Power series method; SH wave; Wentzel-Kramers-Brillouin;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Piezoelectricity, Acoustic Waves, and Device Applications (SPAWDA), 2014 Symposium on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-6424-6
Type :
conf
DOI :
10.1109/SPAWDA.2014.6998601
Filename :
6998601
Link To Document :
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