Design variables for optimizing adaptive metacomposite made of shunted piezoelectric patches distribution

A two-dimensional array of a piezoelectric transducer shunted on a negative capacitance circuit is designed and applied to achieve broadband vibration reduction of a flexible plate over tunable frequency bands. Each surface-bonded patch is connected to a single independent negative capacitance synth...

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Veröffentlicht in:Journal of vibration and control 2016-04, Vol.22 (7), p.1838-1854
Hauptverfasser: Tateo, F, Collet, M, Ouisse, M, Cunefare, KA
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container_end_page 1854
container_issue 7
container_start_page 1838
container_title Journal of vibration and control
container_volume 22
creator Tateo, F
Collet, M
Ouisse, M
Cunefare, KA
description A two-dimensional array of a piezoelectric transducer shunted on a negative capacitance circuit is designed and applied to achieve broadband vibration reduction of a flexible plate over tunable frequency bands. Each surface-bonded patch is connected to a single independent negative capacitance synthetic circuit. A finite-element-based design methodology is used to predict and optimize the attenuation properties of the smart structure. The predictions are then experimentally validated by measuring the harmonic response of the plate and evaluating some derived quantity such as the loss factor and the kinetic energy ratio. The validated model is finally used to explore different configurations with the aim of defining some useful design criteria. The results obtained clearly show how the proposed strategy represents a robust and effective solution for the control of vibrations in complex structures.
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source SAGE Journals
subjects Arrays
Broadband
Capacitance
Circuit design
Circuits
Design analysis
Finite element analysis
Frequencies
Mathematical models
Mechanics
Physics
Plates (structural members)
Transducers
Vibration
Vibration control
title Design variables for optimizing adaptive metacomposite made of shunted piezoelectric patches distribution
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