Title :
A study on the arch type ultrasonic motor
Author_Institution :
Dept. of Mech. Eng., Cheng Shiu Univ., Kaohsjung, Taiwan
Abstract :
This paper is mainly discussing the movement speed of the arch type ultrasonic motor under conditions of different loading, driving voltage, driving frequency and driving methods. As for the arch type ultrasonic motor of the main components, including: an arch base and two ultrasonic actuators. Both sides of the arch base which has three holes at different heights. Those holes can be used to fixed ultrasonic actuators. Therefore, the arch type ultrasonic motor has 18 different driving methods in the x-y plane. According to the experimental results, the maximum movement speed in the x direction is 93.2mm/sec under conditions of 71.0kHz driving frequency, 100Vp-p driving voltage, 54.8Watts input power, net weight and the ultrasonic actuator at the same time in the lowest position. And the maximum movement speed in the y direction is 240mm/sec under conditions of 34.0kHz driving frequency, 100Vp-p driving voltage, 120gw net weight and the ultrasonic actuator at the same time in the lowest position. As the maximum loading is 3.0kgw under conditions of 108.0kHz driving frequency, 100Vp-p driving voltage, 12.9mm/sec movement speed in the y direction and the ultrasonic actuator at the same time in the lowest position.
Keywords :
piezoelectric actuators; ultrasonic motors; arch type ultrasonic motor; driving frequency; driving voltage; frequency 108.0 kHz; frequency 34.0 kHz; frequency 71.0 kHz; movement speed; power 54.8 W; ultrasonic actuators; velocity 12.9 mm/s; velocity 240 mm/s; velocity 93.2 mm/s; voltage 100 V; x-y plane; Acoustics; Actuators; Finite element methods; Impedance; Loading; Time frequency analysis; Vibrations; Arch Type Ultrasonic Motor (ATUSM); Driving Frequency; Driving Voltage; Movement Speed; Ultrasonic Actuator;
Conference_Titel :
Electric Information and Control Engineering (ICEICE), 2011 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-8036-4
DOI :
10.1109/ICEICE.2011.5777748