A Novel Approach to a Piezoelectric Sensing Element
Author(s) -
Marcias Martinez,
A. Artemev
Publication year - 2010
Publication title -
journal of sensors
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.399
H-Index - 43
eISSN - 1687-7268
pISSN - 1687-725X
DOI - 10.1155/2010/816068
Subject(s) - piezoelectricity , materials science , piezoelectric sensor , voltage , poling , signal (programming language) , finite element method , acoustics , electric field , pmut , hydrostatic pressure , pressure sensor , stress (linguistics) , piezoelectric coefficient , hydrostatic equilibrium , optoelectronics , composite material , structural engineering , electrical engineering , mechanical engineering , engineering , computer science , mechanics , ferroelectricity , physics , dielectric , linguistics , philosophy , quantum mechanics , programming language
Piezoelectric materials have commonly been used in pressure and stress sensors; however, many designs consist of thin plate structures that produce small voltage signals when they are compressed or extended under a pressure field. This study used finite element methods to design a novel piezoelectric pressure sensor with a C-shaped piezoelectric element and determine if the voltage signal obtained during hydrostatic pressure application was enhanced compared to a standard thin plate piezoelectric element. The results of this study demonstrated how small deformations of this C-shaped sensor produced a large electrical signal output. It was also shown that the location of the electrodes for this sensor needs to be carefully chosen and that the electric potential distribution varies depending on the poling of the piezoelectric element. This study indicated that the utilization of piezoelectric materials of different shapes and geometries embedded in a polymer matrix for sensing applications has several advantages over thin plate solid piezoelectric structures
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