Piezoelectric Electromechanical Transducers for Underwater Sound, Part I /

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Bibliographic Details
Author / Creator:S. Aronov, Boris, author.
Imprint:Boston, MA : Academic Studies Press, [2022]
©2022
Description:1 online resource (174 p.)
Language:English
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/13500922
Hidden Bibliographic Details
ISBN:1644698250
9781644698259
Digital file characteristics:text file PDF
Notes:Open Access
In English.
Description based on online resource; title from PDF title page (publisher's Web site, viewed 29. Jun 2022).
Summary:The book presents a broad-scope analysis of piezoelectric electromechanical transducers and the related aspects of practical transducer design for underwater applications. It uses an energy method for analyzing transducer problems that provides the physical insight important for the understanding of electromechanical devices. Application of the method is first illustrated with transducer examples that can be modeled as systems with a single degree of freedom, (such as spheres, short cylinders, bars and flexural disks and plates made of piezoelectric ceramics). Thereupon, transducers are modeled as devices with multiple degrees of freedom. In all these cases, results of modeling are presented in the form of equivalent electromechanical circuits convenient for the calculation of the transducers' operational characteristics. Special focus is made on the effects of coupled vibrations in mechanical systems on transducer performance. The book also provides extensive coverage of acoustic radiation including acoustic interaction between the transducers. The book is inherently multidisciplinary. It provides essential background regarding the vibration of elastic passive and piezoelectric bodies, piezoelectricity, acoustic radiation, and transducer characterization. Scientists and engineers working in the field of electroacoustics and those involved in education in the field will find this material useful not only for underwater acoustics, but also for electromechanics, energy conversion and medical ultrasonics. Part I contains an introduction to the energy method illustrated with examples of one degree of freedom transducers. It is self-sufficient and can be read independently.
Standard no.:10.1515/9781644698259

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505 0 0 |t Frontmatter --  |t FOREWORD --  |t PREFACE --  |t ACKNOWLEDGEMENT --  |t TABLE OF CONTENTS --  |t CHAPTER 1 INTRODUCTION --  |t CHAPTER 2 DESIGNING TRANSDUCERS --  |t CHAPTER 3 TRANSDUCER PERFORMANCE ANALYSIS --  |t LIST OF SYMBOLS --  |t INDEX 
520 |a The book presents a broad-scope analysis of piezoelectric electromechanical transducers and the related aspects of practical transducer design for underwater applications. It uses an energy method for analyzing transducer problems that provides the physical insight important for the understanding of electromechanical devices. Application of the method is first illustrated with transducer examples that can be modeled as systems with a single degree of freedom, (such as spheres, short cylinders, bars and flexural disks and plates made of piezoelectric ceramics). Thereupon, transducers are modeled as devices with multiple degrees of freedom. In all these cases, results of modeling are presented in the form of equivalent electromechanical circuits convenient for the calculation of the transducers' operational characteristics. Special focus is made on the effects of coupled vibrations in mechanical systems on transducer performance. The book also provides extensive coverage of acoustic radiation including acoustic interaction between the transducers. The book is inherently multidisciplinary. It provides essential background regarding the vibration of elastic passive and piezoelectric bodies, piezoelectricity, acoustic radiation, and transducer characterization. Scientists and engineers working in the field of electroacoustics and those involved in education in the field will find this material useful not only for underwater acoustics, but also for electromechanics, energy conversion and medical ultrasonics. Part I contains an introduction to the energy method illustrated with examples of one degree of freedom transducers. It is self-sufficient and can be read independently. 
546 |a In English. 
588 0 |a Description based on online resource; title from PDF title page (publisher's Web site, viewed 29. Jun 2022). 
506 0 |a Open Access  |5 EbpS 
650 0 |a Piezoelectric transducers.  |0 http://id.loc.gov/authorities/subjects/sh85102070 
650 0 |a Underwater acoustics.  |0 http://id.loc.gov/authorities/subjects/sh85139609 
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653 |a electromechanical circuits. 
653 |a piezoelectric transducers. 
653 |a underwater sound. 
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