Time domain response of a piezoelectric layer

Author:

Yoritomo John Y.1ORCID,Dzikowicz Benjamin R.1,Tressler James F.1

Affiliation:

1. Physical Acoustics Branch, Code 7130, United States Naval Research Laboratory , Washington, DC 20375, USA

Abstract

A number of one-dimensional models have been developed to inform the design of piezoelectric transducers. The majority of these models are in the frequency domain. In this paper, we develop a one-dimensional time-domain model for the mechanical response of a piezoelectric layer. Secondary effects, resulting from feedback between the acoustic and electric variables, are included in the model. Our approach utilizes Green's function for the Helmholtz equation with radiation boundary conditions and the methods of complex analysis. The model predictions are validated by comparison with a finite-difference time-domain numerical simulation of the governing acoustic equations in and outside the layer. This time-domain model enables efficient calculation of the secondary piezoelectric action effects and provides the mechanical response to an arbitrary electrical source.

Funder

Office of Naval Research

Publisher

Acoustical Society of America (ASA)

Subject

Acoustics and Ultrasonics,Arts and Humanities (miscellaneous)

Reference19 articles.

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2. Ultrasonic transducers: Materials and design for sensors, actuators and medical applications;Nakamura,2012

3. New equivalent circuits for elementary piezoelectric transducers;Electron. Lett.,1970

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