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Abstrakty
This article presents the results of experimental and numerical work on the dynamic electroelastic response of Rosen-type piezoelectric transformers. Experiments were conducted to measure the electrical impedance, phase angle and voltage gain at various frequencies. The three-dimensional finite element method was also employed to solve the coupled electro-elastic boundary value problem. The electrical impedance, phase angle and voltage gain were calculated and a comparison was made between experiment and simulation. The effects of load resistance and capacitance on the voltage gain and electroelastic field concentrations were also discussed in detail.
Czasopismo
Rocznik
Tom
Strony
119--131
Opis fizyczny
Bibliogr. 10 poz.
Bibliografia
- 1. S. MANUSPIYA, P. LAORATANAKUL and K. UCHINO, Integration of a piezoelectric trans-former and an ultrasonic motor, Ultrasonics, 41, 83-87, 2003.
- 2. N.Y. WONG, Y. ZHANG, H.L.W. CHAN and C.L. CHOY, A bilayer piezoelectric trans-former operating in a bending vibration modę, Mater. Sci. Eng. B, 99, 164-167, 2003.
- 3. L. HWANG, J. Yoo, E. JANG, D. OH, Y. JEONG, I. AHN and M. CHO, Fabrication and characteristics of PDA LCD backlight driving circuits using piezoelectric transformer, Sens. Actuators A, 115, 73-78, 2004.
- 4. V. L. KARLASH, Electroelastic vibrations and transformation ratio of a planar piezoce-ramic transformer, J. Sound Vib., 277, 353-367, 2004.
- 5. F. NARITA, S. LIN and Y. SHINDO, Electroelastic fracture mechanics analysis of central actwe piezoelectric transformer, Eur. J. Mech. A, 24, 377-392, 2005.
- 6. Y. SHINDO, H. MURAKAMI, K. HIRIGUCHI and F. NARITA, Evaluation of electric fracture properties of piezoelectric ceramics using the finite element and single-edge precracked-beam methods, J. Am. Ceram. Soc., 85, 1243-1243, 2002.
- 7. Y. SHINDO, F. NARITA and M. MIKAMI, Double torsion testing and finite element analysis for determining the electric fracture properties of piezoelectric ceramics, J. Appl. Phys., 97, 114109, 2005.
- 8. M. YOSHIDA, F. NARITA, Y. SHINDO, M. KARAIWA and K. HORIGUCHI, Electroelastic field concentration by circular electrodes in piezoelectric ceramics, Smart Mater. Struct., 12, 972-978, 2003.
- 9. Y. SHINDO, M. YOSHIDA, F. NARITA and K. HORIGUCHI, Electroelastic field concentrations ahead of electrodes in multilayer piezoelectric actuators: experiment and finite element simulation, J. Mech. Phys. Solids, 52, 1109-1124, 2004.
- 10. F. NARITA, Y. SHINDO and M. MIKAMI, Analytical and experimental study of nonlinear bending response and domain wall motion in piezoelectric laminated actuators under an electric fields, Acta Mater., 53, 4523-4529, 2005.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT7-0005-0028