YE Hui-ying, PU Zhao-bang . Analysis of the capacity of energy transmission for piezoelectric bimorph[J]. Editorial Office of Optics and Precision Engineering, 2000,(4): 345-350
YE Hui-ying, PU Zhao-bang . Analysis of the capacity of energy transmission for piezoelectric bimorph[J]. Editorial Office of Optics and Precision Engineering, 2000,(4): 345-350DOI:
Analysis of the capacity of energy transmission for piezoelectric bimorph
the effectiveness and the maximum mechanical output energy of piezoelectric bimorphs under three constant loading conditions(force
moment
pressure)are quantitatively analyzed based on its cantilever constitutive equations. As a result
the electromechanical conversion mostly depend on the transverse electromechanical coupling factor k 31
and they are largest in the case of a moment
smaller in the case of a force
and smallest in the case of a pressure. These conclusions give directions for designing the structure of piezoelectric bimorphs actuators.
关键词
Keywords
references
Smits Jan G, Dalke Susan I, Cooney Thomas K. The constituent equations of piezoelectric bimorphys[J] . Sensors and Actuators A,1991,28:41-61.
Lee J Kelly, Marcus Michael A. The deflection-bandwidth product of poly(Vinylidene Fluoride)benders and related structures [J] . Ferroelectrics, 1981: 32: 93-101.
Lee J Kelly. Piezoelectric bimorph optical beam scanners: analysis and construction[J] . Applied Optics, 1979,18(4):454-459.
Kokorowski S A. Analysis of adaptive optical elements made from piezoelectric bimorphs[J] . J. Opt. Soc. Am.,1979,69(1): 181-187.
Bill B. Measuring simultaneously translational and angular acceleration with the new translation-angular-pie-zobeam(TAP)system[J] . Sensors and actuators, 1990,A21-A23: 282-284.
Peter D J, Blackford L. Piezoelectric bimorph-based translation device for two-dimensional remote micropositioning[J] . Rev. Sci. Instrum.,1989,60(1):138-140.
Goli J, Smits Jan G, Ballato A. Dynamic matrix of end-loaded piezoelectric bimorphs[A] . IEEE Ultrasonics Symposium[C] . 1995. 1101-1104.
Coughin Mark F, Stamenovic Dimitrije, Smits Jan G. Determining spring stiffness by the resonance frequency of cantilevered piezoelectric bimorphs[J] . IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, 1997,44(4): 730-732.
Smits Jan G. Dersign considerations of a piezoelectric-on-silicon microrobot[J] . Sensors and Actuators A, 1992,35:129-135.
Smits Jan G. Choi Wai-shing. Dynamic behavior and shifting of resonance frequencies of ZnO on SisN4 bimorphs [J] . Ferroelectrics, 1993,145:73-82.
Smits Jan G. Very large deflection with quadratic voltage dependence of ZnO on Si3N4 bimorph[J] . IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, 1992,39(2): 302-304.
Rogacheva N N. Electromechanical analysis of a symmetric piezoelectric/elastic laminate structure:theory and experiment[J] . IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Contorl, 1998,45(2): 285-294.
Smits Jan G, Dalke Susan I, Cooney Thomas K. The constituent equations of piezoelectric bimorphs[J] . Sensors and Actuators A, 1991,28:41-61.
Smits Jan G, Ballato Arthur. Dynamic admittance matrix of piezoelectric cantilever bimorphs[J] . Journal of microelectromechanical systems, 1994,3(3):105-112.
Smits Jan G, Ballato Arthur. Resonance and antiresonance of symmetric and asymmetric cantilevered piezoelectric flexors[J] .IEEE Transactions on Ultraonic, Ferroelectrics and Frequency control, 1996,44(2):250-257.
Ballato Arthur, Smits Jan G. Network representation for piezoelectric bimorphs [J] . IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control,1991,38(6):595-602.
Smits Jan G, Cooney Thomas K. The effectiveness of a piezoelectric bimorph actuator to perform mechanical work under various constant loading conditions[J] . Ferroelectrics, 1991,119: 89-105.
Smits Jan G, Choi Wai-Shing. The effectivenss of a piezoelectric heterogeneous bimorph to perform mechanical work under various constant loading conditions[J] . Ferroelectrics, 1992,135:447-459.
Smits Jan G. The effectiveness of a piezoelectric bimorph to perform mechanical work against various spring-type loads[J] . Ferroelectrics, 1991,120: 241-252.
Wang Qing-Ming. Electromechanical coupling and output efficiency of piezoelectric bending actuators[J] . IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency control, 1999,46(3):638-646.