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Proceedings Paper

Nonlinear dynamics of thin film polyvinylidene fluoride cantilevers
Author(s): Amit Shukla
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Paper Abstract

Design and development of electro-active polymeric devices for sensing and actuation requires accurate characterization of its nonlinear dynamic behavior and performance characteristics. Thin film cantilevers are being applied for numerous sensor and actuator applications. A nonlinear model of a piezoelectric thin plate cantilever is developed in this work using a two-mode approximation developed by Galerkin's method. This reduced order model is then studied using perturbation method for the nonlinear dynamic response due to a harmonic excitation. The results obtained demonstrate the nonlinear nature of the dynamic behavior of thin plates made of polymer polyvinylidene fluoride. The exhibited nonlinear behavior includes parameter dependent amplitude modulation, nonlinear jump and nonlinear dependence on excitation frequency and excitation amplitude. This study is a step forward in understanding the associated dynamics so as to utilize these geometries in various transducer applications.

Paper Details

Date Published: 27 July 2004
PDF: 11 pages
Proc. SPIE 5385, Smart Structures and Materials 2004: Electroactive Polymer Actuators and Devices (EAPAD), (27 July 2004); doi: 10.1117/12.539586
Show Author Affiliations
Amit Shukla, Miami Univ. (United States)

Published in SPIE Proceedings Vol. 5385:
Smart Structures and Materials 2004: Electroactive Polymer Actuators and Devices (EAPAD)
Yoseph Bar-Cohen, Editor(s)

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