Title :
Equivalent circuit for unloaded triple-layer piezoelectric cantilevers
Author :
Li-jiao Gong ; Bin Ju ; Guang-jun Xiao ; Zhi-hua Feng
Author_Institution :
Dept. of Precision Machinery & Precision Instrum., Univ. of Sci. & Technol. of China, Hefei, China
fDate :
Oct. 30 2014-Nov. 2 2014
Abstract :
Triple-layer piezoelectric composite cantilevers possess good electromechanical conversion behavior with characteristics suitable for diverse applications, especially at low frequency. Thus, the use of such cantilevers has been extensively attempted in fabricating piezoelectric devices. This study reports on the accurate determination methods for the equivalent circuit parameters derived from the electrical admittance of triple-layer piezoelectric cantilevers. Analytical expressions of electrical admittance are presented. The lumped parameters available for the Van Dyke equivalent circuit model are also derived from expressions for the electrical admittance of piezoelectric sandwich structures with two piezoelectric layers. Finally, prototype devices based on the triple-layer piezoelectric cantilever are constructed and tested. Results from the experiments show good agreement with the analytical models.
Keywords :
cantilevers; composite materials; equivalent circuits; lumped parameter networks; piezoelectric devices; piezoelectricity; sandwich structures; Van Dyke equivalent circuit model; analytical expressions; electrical admittance; electromechanical conversion behavior; equivalent circuit parameters; lumped parameters; piezoelectric devices; piezoelectric sandwich structures; triple-layer piezoelectric composite cantilevers; unloaded triple-layer piezoelectric cantilevers; Admittance; Equations; Equivalent circuits; Frequency measurement; Integrated circuit modeling; Mathematical model; Resonant frequency; Bimorph; Electrical admittance; Equivalent circuit; Triple-layer piezoelectric cantilever (TLPC);
Conference_Titel :
Piezoelectricity, Acoustic Waves, and Device Applications (SPAWDA), 2014 Symposium on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-6424-6
DOI :
10.1109/SPAWDA.2014.6998596