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Multi-freedom ring stator supersonic dynamo

An ultrasonic motor, annular stator technology, applied in the direction of generators/motors, piezoelectric effect/electrostrictive or magnetostrictive motors, electrical components, etc. Difficult to control the size, limited application range and other problems, to achieve the effect of solving the problem of pre-pressure application, compact structure and wide application space

Inactive Publication Date: 2006-09-20
NANJING UNIV OF AERONAUTICS & ASTRONAUTICS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, multi-degree-of-freedom ultrasonic motors mostly adopt tubular stator and spherical rotor structure, and the rotation of the three rotating shafts of the rotor is realized by the combination of bending vibration and longitudinal vibration of the stator tube. The preload between the stator and the rotor has not been simple and effective. At present, it is mostly realized by the self-weight of the rotor ball, which makes its driving force smaller
In addition, due to the need to utilize the longitudinal resonance mode of the stator tube, it is difficult to control the axial dimension of the stator, which is not conducive to miniaturization, and the application range is limited

Method used

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  • Multi-freedom ring stator supersonic dynamo
  • Multi-freedom ring stator supersonic dynamo
  • Multi-freedom ring stator supersonic dynamo

Examples

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Embodiment Construction

[0027] In the following, taking n=2, that is, the 16 sector-shaped electrode partitions of the piezoelectric ceramic ring, as an example, the working principle and specific implementation of the multi-degree-of-freedom ultrasonic motor of the ring stator are described.

[0028] Such as figure 1 , figure 2 As shown, the annular stator multi-degree-of-freedom ultrasonic motor of the present invention is mainly composed of a stator assembly, a rotor and a bracket assembly. In the stator assembly, a pair of upper piezoelectric ceramic rings 3 and lower piezoelectric ceramic rings 6 which are unidirectionally polarized in the axial direction are respectively pasted on the non-opposing surfaces of a pair of opposed upper stator rings 4 and lower stator rings 5. The surfaces of the upper piezoelectric ceramic ring 3 and the lower piezoelectric ceramic ring 6 are respectively plated with 16 evenly divided sector electrodes 2 and 7 sector electrodes. The spherical rotor 1 is clamped betw...

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PUM

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Abstract

The ultrasonic motor is composed of stator module, spherical rotor, and bracket module. The stator module consists of a pair of up and low stator ring, and a pair of unidirectional piezoelectric ceramic ring polarized in axial direction ceramic. Fan shaped electrodes are plated on surface of piezoelectric ceramic along circumferential even zones. The rotor is held in middle of two stator rings. Effect of pressure bolts and elastic support boards provides pre-stressing between stator and rotor. Through different fan shaped electrodes, drive signals are supplied to ceramic rings to make stator rings generate traveling wave to drive spherical rotor so as to realize bidirectional rotation around axial line of stator ring; or generate standing wave at different positions to drive spherical rotor so as to realize bidirectional rotation around axial line of passing through center of rotor and perpendicular to axis of stator rings. Features are: large moment and reliable operation.

Description

1. Technical Field: [0001] The annular stator multi-degree-of-freedom ultrasonic motor of the present invention belongs to the field of ultrasonic motors. 2. Background technology: [0002] Ultrasonic motor is a new type of power output device that uses the inverse piezoelectric effect of piezoelectric ceramics and ultrasonic vibration. At present, multi-degree-of-freedom ultrasonic motors mostly adopt tubular stator and spherical rotor structures. The bending vibration and longitudinal vibration of the stator tube are used to realize the rotation of the three rotating shafts of the rotor. The pre-pressure between the stator and the rotor has not been simple and effective. At present, it is mostly realized by the weight of the rotor ball, which makes its driving force smaller. In addition, due to the need to use the longitudinal resonance mode of the stator tube, it is difficult to control the axial size of the stator, which is not conducive to miniaturization and the application...

Claims

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Application Information

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IPC IPC(8): H02N2/10
Inventor 赵淳生金家楣
Owner NANJING UNIV OF AERONAUTICS & ASTRONAUTICS
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