Effect of dimensional size on the electrical voltage generation property of PZT piezoelectric ceramic

Ming Cheng Chure, Long Wu, King Kung Wu, Yu Chang Lin, Meng Jiun Wu, Chia Cheng Tung, Jui Sheng Lin, Wu Chung Ma

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

In this study the relation between output voltages of PZT piezoelectric ceramic body with applied impact mechanical energy are studies. The output voltages of PZT piezoelectric ceramic body are increased with the increasing of the applied mechanical energy. Under the same impact mechanical energy, the output voltages of the PZT piezoelectric ceramic body are depending on both the dimensional size and properties of the samples. The PZT piezoelectric ceramic body with greater (t/D2) can produce a higher output voltage. With the same piezoelectric ceramic body size, under the same impact mechanical energy, the output voltage of soft type piezoelectric ceramic body is higher than that of hard type piezoelectric ceramic body, which is because the g33 value of soft type piezoelectric ceramic body is higher than that of hard type piezoelectric ceramic body.

Original languageEnglish
Title of host publicationAdvances on Materials Engineering
Pages166-170
Number of pages5
DOIs
Publication statusPublished - 2013 Oct 22
Event2013 International Conference on Materials Engineering, ICMEN 2013 - Nanjing, China
Duration: 2013 May 172013 May 19

Publication series

NameApplied Mechanics and Materials
Volume377
ISSN (Print)1660-9336
ISSN (Electronic)1662-7482

Other

Other2013 International Conference on Materials Engineering, ICMEN 2013
CountryChina
CityNanjing
Period13-05-1713-05-19

All Science Journal Classification (ASJC) codes

  • Engineering(all)

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    Chure, M. C., Wu, L., Wu, K. K., Lin, Y. C., Wu, M. J., Tung, C. C., Lin, J. S., & Ma, W. C. (2013). Effect of dimensional size on the electrical voltage generation property of PZT piezoelectric ceramic. In Advances on Materials Engineering (pp. 166-170). (Applied Mechanics and Materials; Vol. 377). https://doi.org/10.4028/www.scientific.net/AMM.377.166