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Solid Micro Horn Array (SMIHA) for Acoustic MatchingTransduction of electrical signals to mechanical signals and vice-versa in piezoelectric materials is controlled by the material coupling coefficient. In general in a loss-less material the ratio of energy conversion per cycle is proportional to the square of the coupling coefficient. In practical transduction however the impedance mismatch between the piezoelectric material and the electrical drive circuitry or the mechanical structure can have a significant impact on the power transfer. This paper looks at novel methods of matching the acoustic impedance of structures to the piezoelectric material in an effort to increase power transmission and efficiency. In typical methods the density and acoustic velocity of the matching layer is adjusted to give good matching between the transducer and the load. The approach discussed in this paper utilizes solid micro horn arrays in the matching layer which channel the stress and increase the strain in the layer. This approach is found to have potential applications in energy harvesting, medical ultrasound and in liquid and gas coupled transducers.
Document ID
20150008599
Acquisition Source
Jet Propulsion Laboratory
Document Type
Conference Paper
External Source(s)
Authors
Sherrit, S.
(Jet Propulsion Lab., California Inst. of Tech. Pasadena, CA, United States)
Bao, X.
(Jet Propulsion Lab., California Inst. of Tech. Pasadena, CA, United States)
Bar-Cohen, Y.
(Jet Propulsion Lab., California Inst. of Tech. Pasadena, CA, United States)
Date Acquired
May 20, 2015
Publication Date
March 9, 2008
Subject Category
Electronics And Electrical Engineering
Acoustics
Meeting Information
Meeting: SPIE Conference on Smart Structures and Materials
Location: San Diego, CA
Country: United States
Start Date: March 9, 2008
End Date: March 13, 2008
Sponsors: International Society for Optical Engineering
Distribution Limits
Public
Copyright
Other
Keywords
power transmission
backing layers
Acoustic matching
impedance
acoustic wave
piezoelectric devices

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