Characterization of PZT/PVDF Composite Film as Functional Material

IEEE SENSORS JOURNAL

Characterization of PZT/PVDF Composite Film as Functional Material

Abstract: !In this paper, we obtained and characterized a composite film made of lead zirconate titanate (PZT) piezoelectric ceramic and nonpolar polyvinylidene fluoride (alpha-PVDF) as a functional material. The scanning electron microscopy results show this composite film to have mixed connectivity due to the agglomeration of some of the PZT particles. The response of the composite to an applied ac voltage at 4110 Hz has a slope of 0.074 nm/V. The measured displacement is in the range of 0-30 nm for electric voltages ranging from 0 to 400 V. The experimental results show the composite performance as an acoustic emission sensor to be in good agreement with the response of a commercial standard microphone in the frequency range of 2-6 kHz. By applying 2 kN of cyclic force at a frequency of 3 Hz, we obtained an 80-V peak signal and calculated a dissipated power equal to 158 mu W.

Author(s): de Freitas, RLB; Sakamoto, WK; Freitas, LPS; Castro, F; Lima, AP; Kitano, C; de Carvalho, AA

IEEE SENSORS JOURNAL

Volume: 18 Pages: 5067-5072 Published: JUN 15 2018

PDF: Characterization of PZTPVDF Composite Film as Functional Material

DOI: 10.1109/JSEN.2018.2830115

 

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O Laboratório Aberto de Interatividade para Disseminação do Conhecimento Científico e Tecnológico (LAbI), vinculado à Universidade Federal de São Carlos (UFSCar), é voltado à prática da divulgação científica pautada na interatividade; nas relações entre Ciência, Arte e Tecnologia.