DocumentCode :
1811074
Title :
Effect of polymer layer on the performance of piezoelectric harvester in thickness-shear vibration
Author :
Jiang, Shu-nong ; Guo, Shao-hua ; Li, Xian-fang
Author_Institution :
Sch. of Civil Eng. & Archit., Central South Univ., Changsha, China
fYear :
2009
fDate :
17-20 Dec. 2009
Firstpage :
52
Lastpage :
52
Abstract :
Because of its relatively high resonant frequency, a thickness-shear mode piezoelectric harvester composed of a cylindrical piezoelectric ceramic shell is not suitable for converting mechanical energy to electrical energy from ambient vibration sources, most of which are of low frequencies. Therefore, it´s important for us to reduce the resonant frequency so as to enlarge the application domain of the harvester, and the traditional method is to increasing the attached mass or the thickness of the piezoelectric shell. But if we want to decrease the system resonant frequency much more, some new ideals must be proposed. This article presents an efficient approach to decrease the resonant frequency by fixing a polymer layer at the inner surface of the piezoelectric shell. Based on the linear piezoelectricity theory, the effects of the geometrical parameters of the polymer layer on the performance of the piezoelectric harvester are analyzed. Numerical results indicate that the use of polymer layer can considerably reduce the system resonant frequency.
Keywords :
energy harvesting; piezoceramics; piezoelectric devices; polymers; vibrations; ambient vibration sources; cylindrical piezoelectric ceramic shell; linear piezoelectricity theory; mechanical energy conversion; polymer layer; system resonant frequency; thickness-shear mode piezoelectric harvester; thickness-shear vibration; Ceramics; Civil engineering; Erbium; Frequency conversion; Mechanical energy; Performance analysis; Piezoelectricity; Polymers; Resonant frequency; Vibrations; Piezoelectric harvester; polymer layer; thickness-shear vibration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Piezoelectricity, Acoustic Waves, and Device Applications (SPAWDA) and 2009 China Symposium on Frequency Control Technology, Joint Conference of the 2009 Symposium on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-4950-7
Type :
conf
DOI :
10.1109/SPAWDA.2009.5428950
Filename :
5428950
Link To Document :
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