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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A piezoelectric motor using flexural vibration of a thin piezoelectric membrane
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A piezoelectric motor using flexural vibration of a thin piezoelectric membrane

机译:利用压电薄膜的弯曲振动的压电马达

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摘要

This paper describes a new implementation of a disk-type piezoelectric motor, whose stator is a commercial available piezomembrane composed of a nickel alloy disk to which a piezoceramic disk is bonded. The two disks are concentric, and the total thickness is very small. Ultrasonic motors are based on the concept of driving a rotor by mechanical vibration excited on a stator, via the piezoelectric effect. The rotor is in contact with the stator, and the driving force is the frictional force between rotor and stator. To transform the mechanical vibration of the stator in the rotor rotation, a traveling wave must be excited on the stator surface. The proposed motor can be regarded as a disk-type, single wavelength motor in which the traveling wave is due to the natural flexural vibration of the piezomembrane at low frequency. The behavior of the stator is analyzed both theoretically, by using the theory of isotropic and homogeneous vibrating plates, and by means of a commercial finite element computer code, finding a good agreement with the experimental results. The main features of the motor are very small thickness, appreciable torque, and high speed, obtained with low input power at low voltage; the intended application is to substitute the moving-coil in analogic instrumentation.
机译:本文介绍了一种磁盘式压电电动机的新实现方式,该电动机的定子是一种市售的压电膜,该压电膜由结合了压电陶瓷磁盘的镍合金磁盘组成。两个盘是同心的,总厚度很小。超声波马达基于通过压电效应通过在定子上激发的机械振动来驱动转子的概念。转子与定子接触,驱动力是转子与定子之间的摩擦力。为了在转子旋转中改变定子的机械振动,必须在定子表面上激发行波。所提出的电动机可以看作是盘式单波长电动机,其中行波是由于压电膜在低频下的自然弯曲振动引起的。理论上,通过使用各向同性和均质振动板的理论,以及通过商业有限元计算机代码,分析了定子的性能,发现与实验结果非常吻合。电动机的主要特点是厚度小,扭矩可观,转速高,在低电压下输入功率低。预期的应用是在模拟仪器中替代动圈。

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