2008Unpublished venueRequires access

Customizable field airborne ultrasonic transducers based on electromechanical film

Joao L. Ealo, Fernando Seco, Carlos Prieto, Antonio R. Jiménez, Javier Roa, Aikaterini D. Koutsou, Jorge Guevara

Open publisher page 23 citations

Abstract

In this work we empirically show that the Emfit film can be stuck on a curved surface without influencing its original electromechanical performance. This characteristic along with the previously reported piston-like response of the film at frequencies below 150 kHz, opens up the possibility to fabricate ultrasonic transducers of complex developable substrate and subsequently, customizable acoustic field. As a first step to complex acoustic directivity patterns, a quasi-spherical substrate is proposed in order to customize an omnidirectional radiation field. Numerical simulations were used in order to show that such an omnidirectional radiation directivity pattern can be approximated by an Emfit based transducer stuck on a quasi-spherical substrate. This works shows preliminary efforts directing to build an omnidirectional, spherical ultrasonic transducer, based on Emfit film.

About this research paper

What this paper is about

In this work we empirically show that the Emfit film can be stuck on a curved surface without influencing its original electromechanical performance. This characteristic along with the previously reported piston-like response of the film at frequencies below 150 kHz, opens up the possibility to fabricate ultrasonic transducers of complex developable substrate and subsequently, customizable acoustic field. As a first step to complex acoustic directivity patterns, a quasi-spherical substrate is proposed in order to customize an omnidirectional radiation field. Numerical simulations were used in order to show that such an omnidirectional radiation directivity pattern can be approximated by an Emfit based transducer stuck on a quasi-spherical substrate. This works shows preliminary efforts directing to build an omnidirectional, spherical ultrasonic transducer, based on Emfit film.

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Available abstract

In this work we empirically show that the Emfit film can be stuck on a curved surface without influencing its original electromechanical performance. This characteristic along with the previously reported piston-like response of the film at frequencies below 150 kHz, opens up the possibility to fabricate ultrasonic transducers of complex developable substrate and subsequently, customizable acoustic field. As a first step to complex acoustic directivity patterns, a quasi-spherical substrate is proposed in order to customize an omnidirectional radiation field. Numerical simulations were used in order to show that such an omnidirectional radiation directivity pattern can be approximated by an Emfit based transducer stuck on a quasi-spherical substrate. This works shows preliminary efforts directing to build an omnidirectional, spherical ultrasonic transducer, based on Emfit film.

Key concepts: Omnidirectional antenna, Directivity, Ultrasonic sensor, Transducer, Acoustics, Piston (optics), Materials science, Substrate (aquarium)

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