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Computer Simulation and Modelling of Standing Wave Ultrasonic Motor Using a Single Flexural Vibration Transducer

机译:单弯振动传感器的驻波超声波电机计算机仿真与建模

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This paper presents a standing wave rotary piezoelectric ultrasonic using a single flexural vibration transducer. The motor consists of three main parts, stator, rotor and housing unit. The stator is a single piezoceramic flexural vibration transducer. The rotor is made up of the motor driving wheel and the shaft. A computer simulation and modelling using finite element analysis for the proposed motor is discussed and used in the motor design development process. Finite element analysis has been used to evaluate the motor structure by performing an algebraic solution of a set of equations, describing an ideal model structure, with a finite number of variables. The established simulation and modelling for ultrasonic motor using finite element analysis enabled to select, the material of the flexural transducer, defining the operating parameters for the motor, determining the principles of motion and proposing an innovative technique to control the direction of motion, by controlling the phase between the two modes of vibrations. This enabled to create two directions of motion from a single vibration bar. A prototype of the proposed motor was fabricated and its characteristics measured. This showed that operating parameters of the fabricated prototype are: frequency equal to 40.7 KHz, voltage: 50: 100 volt and current: 50: 100 m-amperes. This is showed a close agreement with FEA. Typical output of the prototype is no-load speed of 120 rpm, a resolution on the order of micrometers and a dynamic response <100 μsec. The motor is able to carry a load equal to 2.8 Newton.
机译:本文介绍了一种使用单个弯曲振动传感器的常设波旋转压电超声波。电机由三个主要部件,定子,转子和壳体单元组成。定子是单一压电陶瓷弯曲振动传感器。转子由电动机驱动轮和轴构成。在电机设计开发过程中讨论并使用了使用有限元分析的计算机仿真和建模。有限元分析已被用于通过执行一组方程的代数溶液来评估电动机结构,该等式的描述理想模型结构具有有限数量的变量。使用有限元分析的超声波电动机建立的模拟和建模,弯曲换能器的材料,定义电动机的操作参数,确定运动原理,并通过控制来控制运动方向的创新技术。两种振动模式之间的相位。这使得能够从单个振动栏中创建两个运动方向。制造了所提出的电动机的原型,并测量其特性。这表明制造原型的操作参数是:频率等于40.7 kHz,电压:50:100伏和电流:50:100米高。这表明与FEA有关。原型的典型输出是无负载速度为120rpm,分辨率在微米的顺序和动态响应<100微秒。电动机能够携带等于2.8牛顿的负载。

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