Piezoelectric ceramic transformer using radial vibration mode disks

Author(s):  
K. Sakurai ◽  
S. Shindou ◽  
K. Ohnishi ◽  
Y. Tomikawa
1998 ◽  
Vol 37 (Part 1, No. 9B) ◽  
pp. 5326-5329
Author(s):  
Katsutoshi Sakurai ◽  
Shigeki Shindou ◽  
Kazumasa Ohnishi ◽  
Yoshiro Tomikawa

1998 ◽  
Vol 37 (Part 1, No. 5B) ◽  
pp. 2896-2900 ◽  
Author(s):  
Katsutoshi Sakurai ◽  
Tohru Nakazawa ◽  
Sigeru Shindou ◽  
Kazumasa Ohnishi ◽  
Yoshiro Tomikawa

1999 ◽  
Vol 38 (Part 1, No. 6A) ◽  
pp. 3596-3599 ◽  
Author(s):  
Tomoaki Futakuchi ◽  
Hiroshi Sugimori ◽  
Kazuhiro Horii ◽  
Arata Yanagawa ◽  
andMasatoshi Adachi

Sensors ◽  
2020 ◽  
Vol 20 (17) ◽  
pp. 4785
Author(s):  
Xiaoyu Wang ◽  
Shuyu Lin

The radial vibration of a radial composite tubular transducer with a large radiation range and power capacity is studied. The transducer is composed of a longitudinally polarized piezoelectric ceramic tube and a coaxial outer metal tube. Assuming that the longitudinal length is much larger than the radius, the electromechanical equivalent circuits of the radial vibration of a piezoelectric ceramic long tube and a metal long tube are derived and obtained for the first time following the plane strain theory. As per the condition of the continuous forces and displacements of two contact surfaces, the electromechanical equivalent circuit of the tubular transducer is obtained. The radial resonance/anti-resonance frequency equation and the expression of the effective electromechanical coupling coefficient are obtained. Then, the effects of the radial geometry dimension of the transducer on the vibration characteristics are analyzed. The theoretical resonance frequencies, anti-resonance frequencies, and the effective electromechanical coupling coefficients at the fundamental mode and the second mode are in good agreement with the finite element analysis (FEA) results. The study shows that when the overall size of the transducer is unchanged, as the proportion of piezoelectric ceramic increases, the radial resonance/anti-resonance frequency and the effective electromechanical coupling coefficient of the transducer at the fundamental mode and the second mode have certain characteristics. The radial composite tubular transducer is expected to be used in high-power ultrasonic wastewater treatment, ultrasonic degradation, and underwater acoustics, as well as other high-power ultrasonic fields.


1994 ◽  
Vol 360 ◽  
Author(s):  
T. Yoshida

AbstractA new equivalent circuit for the vibratory gyroscope and an analyzing and controlling method for the vibration mode axis of the vibrator have been studied. The vibrator of this gyroscope consists of a piezoelectric-ceramic cylinder. On its outer cylindrical surface, interdigital electrodes are formed. And these electrodes are used for poling, AC excitation as well as detection. In order to prevent some deviation of the performance of the gyroscope due to the adhesion process, these electrodes are directly printed on the cylinder surface.By changing the electrodes pattern and making a groove on the surface of the vibrator, the vibration mode axis can be easily controlled. Optimum design suited for demanded specifications can then be obtained.


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