DocumentCode :
1359270
Title :
Multiresonance design of a Tonpilz transducer using the finite element method
Author :
Hawkins, David W. ; Gough, Peter T.
Author_Institution :
Dept. of Electr. & Electron. Eng., Canterbury Univ., Christchurch, New Zealand
Volume :
43
Issue :
5
fYear :
1996
Firstpage :
782
Lastpage :
790
Abstract :
The design and characterization of a wide bandwidth Tonpilz transducer is carried out using the finite element method. This wide bandwidth has been achieved by introducing a symmetric flexural resonance (sometimes called a "flapping" resonance) in the head-piece of the Tonpilz transducer. This flexural resonance is exploited by lip-mounting of the transducer as opposed to the more traditional nodal mount. Each transducer is characterized by high-power handling, high-electroacoustic efficiency, broad bandwidth (low-Q), and high-electromechanical coupling. These are characteristics which are usually associated with designs employing more complicated electrical or mechanical matching techniques. An array of these transducers was constructed and displays low-ripple (<3 dB) transmission of one-octave 20-40 kHz signals. A comparison with a recent broad-band design by Inoue et al. [1993] which uses a matching plate is also made to illustrate the inherent simplicity of the flexural resonance approach.
Keywords :
finite element analysis; ultrasonic transducer arrays; underwater sound; 20 to 40 kHz; Tonpilz transducer; active transducers; electroacoustic efficiency; electromechanical coupling; finite element method; flapping resonance; high-power handling; lip-mounting; low-ripple transmission; multiresonance design; symmetric flexural resonance; underwater acoustic transducers; Acoustic transducers; Bandwidth; Data communication; Finite element methods; Impedance matching; Resonance; Sediments; Synthetic aperture sonar; Underwater acoustics; Vibrations;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.535479
Filename :
535479
Link To Document :
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