DocumentCode :
2859183
Title :
Surface acoustic waves in an infinite plate covered by a viscoelastic layer
Author :
Wu, Rong-xing ; Wang, Ji ; Du, Jian-ke
Author_Institution :
Piezoelectr. Device Lab., Ningbo Univ., Ningbo, China
fYear :
2010
fDate :
10-13 Dec. 2010
Firstpage :
83
Lastpage :
88
Abstract :
In order to understand the characteristics of the viscoelastic coating and evaluate adhesive quality, we analyzed the effect of a thin viscoelastic layer on the propagation of surface acoustic waves in an infinite plate, which can be isotropic or anisotropic. Based on an introduction of potential functions of wave propagation in the viscoelastic layer, we started from the interaction of a thin viscoelastic layer and surface acoustic waves in an isotropic infinite plate, and obtained the relationship between wave velocity and the thickness of viscoelastic layer. Numerical results shown when the thickness of the viscoelastic layer is zero, surface acoustic waves will have the same velocity as the case of corresponding infinite plate; with the increase of the thickness of the viscoelastic layer, both mass and attenuation effect will have more influence on wave velocity. Finally, we analyzed the effect of a thin viscoelastic layer on the propagation of surface acoustic waves in a quartz crystal plate. It is observed from an ST-cut quartz crystal plate that there are many vibration modes and corresponding velocities due to the interaction of waves in the plate and viscoelastic layer. All these results and method could provide potential applications for estimation of viscoelastic parameters or evaluation of quality of adhesion.
Keywords :
adhesion; coatings; quartz; surface acoustic waves; vibrational modes; viscoelasticity; ST-cut quartz crystal plate; SiO2; adhesion; attenuation effect; isotropic infinite plate; mass effect; surface acoustic wave propagation; vibration modes; viscoelastic coating; viscoelastic layer; viscoelastic parameters; Crystals; Equations; Stress; Substrates; Surface acoustic waves; Surface; plate; sensor; velocity; vibration; viscoelastic; wave;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Piezoelectricity, Acoustic Waves and Device Applications (SPAWDA), 2010 Symposium on
Conference_Location :
Xiamen
Print_ISBN :
978-1-4244-9822-2
Type :
conf
DOI :
10.1109/SPAWDA.2010.5744280
Filename :
5744280
Link To Document :
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