Experimental Characterization of A Piezoelectric Transducer Array Taking into Account Crosstalk Phenomenon
Ultrasonic transducer arrays are generally composed of several piezoelectric elements arranged in 1D or 2D ways. Crosstalk is an undesirable phenomenon decreasing the performance of these devices. It generates parasitic displacements at the elements' radiating surfaces, which changes the direc...
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Taiwan Association of Engineering and Technology Innovation
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doaj-3cbd14b9da4943489d3c1e511d69e6c12020-11-25T01:31:55ZengTaiwan Association of Engineering and Technology InnovationInternational Journal of Engineering and Technology Innovation2223-53292226-809X2020-01-01101Experimental Characterization of A Piezoelectric Transducer Array Taking into Account Crosstalk PhenomenonAbdelmajid Bybi0Driss Khouili1Christian Granger2Mohammed Garoum3Ahmed Mzerd4Anne -Christine Hladky -Hennion5Mohammed V University in Rabat, High School of Technology in Sale, MEAT, Sale, MoroccoMohammed V University in Rabat, High School of Technology in Sale, LASTIMI, Sale, MoroccoISEN Department, IEMN, UMR CNRS 8520, Lille, FranceMohammed V University in Rabat, High School of Technology in Sale, MEAT, Sale, MoroccoMohammed V University in Rabat, Faculty of Science, STCE, Energy Research Center, Rabat, MoroccoISEN Department, IEMN, UMR CNRS 8520, Lille, France Ultrasonic transducer arrays are generally composed of several piezoelectric elements arranged in 1D or 2D ways. Crosstalk is an undesirable phenomenon decreasing the performance of these devices. It generates parasitic displacements at the elements' radiating surfaces, which changes the directivity of the array. Furthermore, the transducer's displacement plays a critical role in terms of the focal area and transferred intensities. The objective of this paper is to characterize a piezoelectric array composed of seven-elements made of PZ 27 ceramic experimentally. It investigates the effects of the crosstalk phenomenon on the array's performance in particular. The results have shown that the array's elements vibrate mainly in thickness mode, but the displacement is not uniform along their length due to the contribution of a parasitic length mode. Moreover, the major parasitic displacements are obtained on the neighboring passive elements: about -7.3 dB, -11 dB, and -12 dB, on the first, the second, and the third elements, respectively. http://ojs.imeti.org/index.php/IJETI/article/view/4348ultrasonic transducer arraysdisplacement measurementdirectivity patterncrosstalk |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Abdelmajid Bybi Driss Khouili Christian Granger Mohammed Garoum Ahmed Mzerd Anne -Christine Hladky -Hennion |
spellingShingle |
Abdelmajid Bybi Driss Khouili Christian Granger Mohammed Garoum Ahmed Mzerd Anne -Christine Hladky -Hennion Experimental Characterization of A Piezoelectric Transducer Array Taking into Account Crosstalk Phenomenon International Journal of Engineering and Technology Innovation ultrasonic transducer arrays displacement measurement directivity pattern crosstalk |
author_facet |
Abdelmajid Bybi Driss Khouili Christian Granger Mohammed Garoum Ahmed Mzerd Anne -Christine Hladky -Hennion |
author_sort |
Abdelmajid Bybi |
title |
Experimental Characterization of A Piezoelectric Transducer Array Taking into Account Crosstalk Phenomenon |
title_short |
Experimental Characterization of A Piezoelectric Transducer Array Taking into Account Crosstalk Phenomenon |
title_full |
Experimental Characterization of A Piezoelectric Transducer Array Taking into Account Crosstalk Phenomenon |
title_fullStr |
Experimental Characterization of A Piezoelectric Transducer Array Taking into Account Crosstalk Phenomenon |
title_full_unstemmed |
Experimental Characterization of A Piezoelectric Transducer Array Taking into Account Crosstalk Phenomenon |
title_sort |
experimental characterization of a piezoelectric transducer array taking into account crosstalk phenomenon |
publisher |
Taiwan Association of Engineering and Technology Innovation |
series |
International Journal of Engineering and Technology Innovation |
issn |
2223-5329 2226-809X |
publishDate |
2020-01-01 |
description |
Ultrasonic transducer arrays are generally composed of several piezoelectric elements arranged in 1D or 2D ways. Crosstalk is an undesirable phenomenon decreasing the performance of these devices. It generates parasitic displacements at the elements' radiating surfaces, which changes the directivity of the array. Furthermore, the transducer's displacement plays a critical role in terms of the focal area and transferred intensities. The objective of this paper is to characterize a piezoelectric array composed of seven-elements made of PZ 27 ceramic experimentally. It investigates the effects of the crosstalk phenomenon on the array's performance in particular. The results have shown that the array's elements vibrate mainly in thickness mode, but the displacement is not uniform along their length due to the contribution of a parasitic length mode. Moreover, the major parasitic displacements are obtained on the neighboring passive elements: about -7.3 dB, -11 dB, and -12 dB, on the first, the second, and the third elements, respectively.
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topic |
ultrasonic transducer arrays displacement measurement directivity pattern crosstalk |
url |
http://ojs.imeti.org/index.php/IJETI/article/view/4348 |
work_keys_str_mv |
AT abdelmajidbybi experimentalcharacterizationofapiezoelectrictransducerarraytakingintoaccountcrosstalkphenomenon AT drisskhouili experimentalcharacterizationofapiezoelectrictransducerarraytakingintoaccountcrosstalkphenomenon AT christiangranger experimentalcharacterizationofapiezoelectrictransducerarraytakingintoaccountcrosstalkphenomenon AT mohammedgaroum experimentalcharacterizationofapiezoelectrictransducerarraytakingintoaccountcrosstalkphenomenon AT ahmedmzerd experimentalcharacterizationofapiezoelectrictransducerarraytakingintoaccountcrosstalkphenomenon AT annechristinehladkyhennion experimentalcharacterizationofapiezoelectrictransducerarraytakingintoaccountcrosstalkphenomenon |
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