DocumentCode
2537625
Title
Third-order Mindlin plate theory predictions for the frequency-temperature behavior of straight crested wave modes in AT- and SC-cut quartz plates
Author
Yong, Yook-Kong
Author_Institution
Dept. of Civil & Environ. Eng., Rutgers Univ., Piscataway, NJ, USA
fYear
1996
fDate
5-7 Jun 1996
Firstpage
648
Lastpage
656
Abstract
The frequency-temperature behavior of straight crested wave modes in AT- and SC-cut quartz plates are studied using Mindlin first- and third-order plate equations. The first order Mindlin plate theory with shear correction factors was previously found to yield an inaccurate frequency spectra of the modes in the vicinity of the fundamental thickness shear frequency. The third order Mindlin plate equations without correction factors, on the other hand, predict well the frequency spectrum in the same vicinity. In general, the frequency-temperature curves of the fundamental thickness-shear obtained from the first-order Mindlin plate theory are sufficiently different from those of the third-order Mindlin plate theory that they raise concerns. The least accurately predicted mode of vibration is the flexure mode which results in discrepancies in its frequency-temperature behavior. The accuracy of other modes of vibrations depends on the degree of couplings with the flexure mode. Mindlin first-order plate theory with only the shear correction factors is not sufficiently accurate for high frequency crystal vibrations at the fundamental thickness-shear frequency. Correction factors for the flexure and face-shear branches may be needed. Hence, a total of five correction factors may be needed for the first-order plate theory to yield accurate frequency spectra and frequency-temperature curves
Keywords
piezoelectric materials; quartz; vibrations; AT-cut quartz plate; SC-cut quartz plate; SiO2; flexure mode; frequency spectrum; frequency-temperature characteristics; fundamental thickness shear mode; shear correction factor; straight crested wave modes; third-order Mindlin plate theory; vibrations; Accuracy; Capacitive sensors; Chromium; Equations; Frequency; Lagrangian functions; Temperature; Thermal expansion; Thermal stresses;
fLanguage
English
Publisher
ieee
Conference_Titel
Frequency Control Symposium, 1996. 50th., Proceedings of the 1996 IEEE International.
Conference_Location
Honolulu, HI
Print_ISBN
0-7803-3309-8
Type
conf
DOI
10.1109/FREQ.1996.559947
Filename
559947
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