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Magnetic Field Tuning Characteristics of Bimodal Ultrasonic Motor Stator
  • 时间:0
  • 分类:TM359.9[电气工程—电机]
  • 作者机构:Department of Instrument Science and Engineering, Shanghai Jiao Tong University
  • 相关基金:the National Natural Science Foundation of China(Nos.11174206 and 61471237);the Open Fund of State Key Laboratory of Ocean Engineering of Shanghai Jiao Tong University(No.0507);the Shanghai Aerospace Science and Technology Innovation Fund(No.201347)
中文摘要:

The magnetic field tuning characteristics of an ultrasonic motor(USM) stator are discussed. The stator consists of two piezoelectric ceramic transducer(PZT) plates and one sandwiched-in Terfenol-D plate. The dimensions of the stator are carefully adjusted to specifically discuss the influence of the magnetic field on the frequency difference between the longitudinal and bending modes of the stator. The frequency difference discussed in this paper is usually small and mainly caused by uneven materials, machining errors and changes in external conditions(temperature, pre-stress or load). The longitudinal and bending modes of the stator are simultaneously excited by an external electric field to generate the elliptic motion trajectories of the driving points. A direct current(DC) magnetic field is applied to decrease the difference between the two mode frequencies of the fabricated stator.In experiments, the dependences of the two mode frequencies and their difference on DC magnetic fields are all investigated. The experimental results indicate that the difference between the longitudinal and bending mode frequencies of the PZT/Terfenol-D/PZT composite stator can be tuned by changing the intensity of the external DC magnetic field.

英文摘要:

The magnetic field tuning characteristics of an ultrasonic motor (USM) stator are discussed. The stator consists of two piezoelectric ceramic transducer (PZT) plates and one sandwiched-in Terfenol-D plate. The dimensions of the stator are carefully adjusted to specifically discuss the influence of the magnetic field on the frequency difference between the longitudinal and bending modes of the stator. The frequency difference discussed in this paper is usually small and mainly caused by uneven materials, machining errors and changes in external conditions (temperature, pre-stress or load). The longitudinal and bending modes of the stator are simultaneously excited by an external electric field to generate the elliptic motion trajectories of the driving points. A direct current (DC) magnetic field is applied to decrease the difference between the two mode frequencies of the fabricated stator. In experiments, the dependences of the two mode frequencies and their difference on DC magnetic fields are all investigated. The experimental results indicate that the difference between the longitudinal and bending mode frequencies of the PZT/Terfenol-D/PZT composite stator can be tuned by changing the intensity of the external DC magnetic field. ? 2017, Shanghai Jiaotong University and Springer-Verlag Berlin Heidelberg.

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