Controlled inflation of voids in cellular polymer ferroelectrets: Optimizing electromechanical transducer properties
- 19 January 2004
- journal article
- Published by AIP Publishing in Applied Physics Letters
- Vol. 84 (3) , 392-394
- https://doi.org/10.1063/1.1641171
Abstract
When exposed to sufficiently high electric fields, polymer-foam electret materials with closed cells exhibit ferroelectric-like behavior and may therefore be called ferroelectrets. In cellular ferroelectrets, the influence of the cell size and shape distributions on the application-relevant properties is not yet understood. Therefore, controlled inflation experiments were carried out on cellular polypropylene films, and the resulting elastical and electromechanical parameters were determined. The elastic modulus in the thickness direction shows a minimum with a corresponding maximum in the electromechanical transducer coefficient. The resonance frequency shifts as a function of the elastic modulus and the relative density of the inflated cellular films. Therefore, the transducer properties of cellular ferroelectrets can be optimized by means of controlled inflation.Keywords
This publication has 9 references indexed in Scilit:
- Dielectric resonance spectroscopy: a versatile tool in the quest for better piezoelectric polymersIEEE Transactions on Dielectrics and Electrical Insulation, 2003
- Less can be more. Holes in polymers lead to a new paradigm of piezoelectric materials for electret transducersIEEE Transactions on Dielectrics and Electrical Insulation, 2002
- Dielectric barrier microdischarges: Mechanism for the charging of cellular piezoelectric polymersJournal of Applied Physics, 2002
- Understanding the role of the gas in the voids during corona charging of cellular electret films - a way to enhance their piezoelectricityJournal of Physics D: Applied Physics, 2001
- Large and broadband piezoelectricity in smart polymer-foam space-charge electretsApplied Physics Letters, 2000
- Modelling the electromechanical film (EMFi)Journal of Electrostatics, 2000
- Electromechanical response of cellular electret filmsApplied Physics Letters, 1999
- Electrothermomechanical Film. Part I. Design and CharacteristicsJournal of Macromolecular Science: Part A - Chemistry, 1989
- Electromechanical properties of polarized polyvinylidene fluoride films as studied by the piezoelectric resonance methodJournal of Applied Physics, 1976