Theoretical analyses and experiments on ultrasonic motor driving fluid directly

C. Xia, G. Shao, T. Shi, Xiang-chao Wang
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Abstract

Being quite different from the contact ultrasonic motors, in the non-contact ultrasonic motor driving fluid directly the rotor immersed in the fluid doesn't contact with the stator directly. This motor solves many problems of the contact ultrasonic motor, such as shorter life expectancy and continuous running time, and becomes a new research direction in the field of the ultrasonic motor. This paper introduces the unique construction of this motor and the working mechanism. And then the course of transferring energy are discussed, in which the. energy produced by the ultrasonic vibration is transferred to the rotor through the medium of fluid. It is revealed that the shearing Reynolds' stress is the driving force of the fluid flow. After that, this paper makes theoretical anailysis on the acoustic streaming field and sets up the relationship between the acoustic streaming velocity and the rotating speed of the motor. Then the basic operating characteristics of the motor and the relationship between the rotating speed and the driving frequency, the driving voltage, the fluid circumstances and the rotor radius are simulated with MATLAB program. At last the simulation method is proved by experiments.
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超声电机直接驱动流体的理论分析与实验
与接触式超声电机不同,非接触式超声电机直接驱动流体时,转子浸在流体中不与定子直接接触。该电机解决了接触式超声电机寿命短、连续运行时间短等诸多问题,成为超声电机领域新的研究方向。本文介绍了该电机的独特结构和工作机理。然后对能量的传递过程进行了讨论。超声波振动产生的能量通过流体介质传递到转子上。结果表明,剪切雷诺应力是流体流动的驱动力。然后对声流场进行了理论分析,建立了声流速度与电机转速的关系。然后利用MATLAB程序对电机的基本工作特性以及转速与驱动频率、驱动电压、流体环境和转子半径的关系进行了仿真。最后通过实验对仿真方法进行了验证。
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