2002Applied Physics LettersRequires access

Dramatically enhanced effective electrostriction in ferroelectric polymeric composites

Jiangyu Li, Nagadip Rao

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Abstract

This letter reports a ferroelectric polymeric composite concept with dramatically enhanced effective electrostriction, strain energy density, and electromechanical coupling factor, where high-dielectric-constant ceramics are arranged in series with ferroelectric polymers having large electrostrictive strain. We demonstrate the importance of the dielectric constant of the constituent phases and the microstructural geometry of the composite on the effective electrostriction of the material.

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What this paper is about

This letter reports a ferroelectric polymeric composite concept with dramatically enhanced effective electrostriction, strain energy density, and electromechanical coupling factor, where high-dielectric-constant ceramics are arranged in series with ferroelectric polymers having large electrostrictive strain. We demonstrate the importance of the dielectric constant of the constituent phases and the microstructural geometry of the composite on the effective electrostriction of the material.

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OpenAlex reports 36 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This letter reports a ferroelectric polymeric composite concept with dramatically enhanced effective electrostriction, strain energy density, and electromechanical coupling factor, where high-dielectric-constant ceramics are arranged in series with ferroelectric polymers having large electrostrictive strain. We demonstrate the importance of the dielectric constant of the constituent phases and the microstructural geometry of the composite on the effective electrostriction of the material.

Key concepts: Electrostriction, Ferroelectricity, Materials science, Dielectric, Composite material, Composite number, Ceramic, Ferroelectric ceramics

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