期刊文献+

Principle and Experimental Verification of Novel Dual Driving Face Rotary Ultrasonic Motor 被引量:4

Principle and Experimental Verification of Novel Dual Driving Face Rotary Ultrasonic Motor
在线阅读 下载PDF
导出
摘要 Existing rotary ultrasonic motors operating in extreme environments cannot meet the requirements of good environmental adaptability and compact structure at same time,and existing ultrasonic motors with Langevin transducers show better environmental adaptability,but size of these motors are usually big due to the radial arrangement of the Langevin transducers.A novel dual driving face rotary ultrasonic motor is proposed,and its working principle is experimentally verified.The working principle of the novel ultrasonic motor is firstly proposed.The 5th in-plane flexural vibration travelling wave,excited by the Langevin transducers around the stator ring,is used to drive the rotors.Then the finite element method is used in the determination of dimensions of the prototype motor,and the confirmation of its working principle.After that,a laser Doppler vibrometer system is used for measuring the resonance frequency and vibration amplitude of the stator.At last,output characteristics of the prototype motor are measured,environmental adaptability is tested and performance for driving a metal ball is also investigated.At room temperature and 200 V(zero to peak) driving voltage,the motor’s no-load speed is 80 r/min,the stalling torque is 0.35 N·m and the maximum output power is 0.85 W.The response time of this motor is 0.96 ms at the room temperature,and it decreases or increases little in cold environment.A metal ball driven by the motor can rotate at 210 r/min with the driving voltage 300 V(zero to peak).Results indicate that the prototype motor has a large output torque and good environmental adaptability.A rotary ultrasonic motor owning compact structure and good environmental adaptability is proposed,and lays the foundations of ultrasonic motors’ applications in extreme environments. Existing rotary ultrasonic motors operating in extreme environments cannot meet the requirements of good environmental adaptability and compact structure at same time,and existing ultrasonic motors with Langevin transducers show better environmental adaptability,but size of these motors are usually big due to the radial arrangement of the Langevin transducers.A novel dual driving face rotary ultrasonic motor is proposed,and its working principle is experimentally verified.The working principle of the novel ultrasonic motor is firstly proposed.The 5th in-plane flexural vibration travelling wave,excited by the Langevin transducers around the stator ring,is used to drive the rotors.Then the finite element method is used in the determination of dimensions of the prototype motor,and the confirmation of its working principle.After that,a laser Doppler vibrometer system is used for measuring the resonance frequency and vibration amplitude of the stator.At last,output characteristics of the prototype motor are measured,environmental adaptability is tested and performance for driving a metal ball is also investigated.At room temperature and 200 V(zero to peak) driving voltage,the motor’s no-load speed is 80 r/min,the stalling torque is 0.35 N·m and the maximum output power is 0.85 W.The response time of this motor is 0.96 ms at the room temperature,and it decreases or increases little in cold environment.A metal ball driven by the motor can rotate at 210 r/min with the driving voltage 300 V(zero to peak).Results indicate that the prototype motor has a large output torque and good environmental adaptability.A rotary ultrasonic motor owning compact structure and good environmental adaptability is proposed,and lays the foundations of ultrasonic motors’ applications in extreme environments.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第5期1006-1012,共7页 中国机械工程学报(英文版)
基金 supported by National Natural Science Foundation of China(Grant Nos.51205203 51275228 51075212 91123020) Science and Research Foudotion Nanjing University of Aeronautics and Astronautics(Grant Nos.56YAH12015 NZ2010002 S0896-013) Innovation and Entrepreneurship Program of Jiangsu and Priority Academic Program Development of Jiangsu Higher Education Institutions
关键词 ultrasonic motor piezoelectric transducer dual driving face in-plane flexural vibration mode ultrasonic motor piezoelectric transducer dual driving face in-plane flexural vibration mode
  • 相关文献

参考文献22

  • 1SASHIDA T. Motor device utilizing ultrasonic oscillation[P].US,4562374,1985.
  • 2SASHIDA T,KENJO T. An introduction to ultrasonic motors[M].{H}Oxford:Clarendon Press,1993.
  • 3SHERRIT S. Smart material/actuator needs in extreme environments in space[A].{H}San Diego,California,2005.335-346.
  • 4UEHA S,TOMIKAWA Y. Ultrasonic motors theory and applications[M].New York:Oxford Science Publications,1993.
  • 5ZHAO C S.Ultrasonic motors technologies and applications[M]{H}北京:科学出版社,2010.
  • 6UCHINO K. Piezoelectric actuator and ultrasonic motors[M].Boston,MA:Kluwer Academic Publishers,1997.
  • 7HU J H,NAKAMURA K,UEHA S. An analysis of a noncontact ultrasonic motor with an ultrasonically levitated rotor[J].{H}ULTRASONICS,1997,(06):459-467.
  • 8HU J H,NAKAMURA K,UEHA S. A noncontact ultrasonic motor with the rotor levitated by axial acoustic viscous force[J].Electronics and Communications in Japan (Part Ⅲ),1999,(04):56-63.
  • 9IULA A,PAPPALARDO M. A high-power travelling wave ultrasonic motor[J].{H}IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control,2006,(07):1344-1351.
  • 10IULA A,CORBO A,PAPPALARDO M. FE analysis and experimental evaluation of the performance of a travelling wave rotary motor driven by high power ultrasonic transducers[J].{H}Sensors and Actuators A-physical,2010,(1-2):94-100.

同被引文献31

引证文献4

二级引证文献19

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部