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Analytical modeling and experimental validation of a V-shape piezoelectric ultrasonic transducer
46
Citations
23
References
2016
Year
EngineeringExperimental ValidationMechanical EngineeringAnalytical ModelingVibrationsPower UltrasoundPiezoelectric MaterialAnalytical ModelEnergy HarvestingEnergy Harvesting DeviceUltrasonicsAcoustic PropagationPiezoelectric MaterialsPiezoelectricityUltrasoundPiezoelectric NanogeneratorsTransducer PrincipleMechanical SystemsMicromachined Ultrasonic TransducerPiezoelectric Actuator
In this paper, an analytical model of a V-shape piezoelectric ultrasonic transducer is presented. The V-shape piezoelectric ultrasonic transducer has been widely applied to the piezoelectric actuator (ultrasonic motor), ultrasonic aided fabrication, sensor, and energy harvesting device. The V-shape piezoelectric ultrasonic transducer consists of two Langevin-type transducers connected together through a coupling point with a certain coupling angle. Considering the longitudinal and lateral movements of a single beam, the symmetrical and asymmetrical modals of the V-shape piezoelectric ultrasonic transducer are calculated. By using Hamilton–Lagrange equations, the electromechanical coupling model of the V-shape piezoelectric ultrasonic transducer is proposed. The influence of the coupling angle and cross-section on modal characteristics and electromechanical coupling coefficient are analyzed by the analytical model. A prototype of the V-shape piezoelectric ultrasonic transducer is fabricated, and the results of the experiments are in good agreement with the analytical model.
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