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3DOF Ultrasonic Motor with Two Piezoelectric Rings

机译:具有两个压电环的3DOF超声波电机

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摘要

A novel design of a multiple degrees of freedom (multi-DOF) piezoelectric ultrasonic motor (USM) is presented in the paper. The main idea of the motor design is to combine the magnetic sphere type rotor and two oppositely placed ring-shaped piezoelectric actuators into one mechanism. Such a structure increases impact force and allows rotation of the sphere with higher torque. The main purpose of USM development was to design a motor for attitude control systems used in small satellites. A permanent magnetic sphere with a magnetic dipole is used for orientation and positioning when the sphere is rotated to the desired position and the magnetic field synchronizes with the Earth’s magnetic dipole. Also, the proposed motor can be installed and used for robotic systems, laser beam manipulation, etc. The system has a minimal number of components, small weight, and high reliability. Numerical simulation and experimental studies were used to verify the operating principles of the USM. Numerical simulation of a piezoelectric actuator was used to perform modal frequency and harmonic response analysis. Experimental studies were performed to measure both mechanical and electrical characteristics of the piezoelectric motor.
机译:本文提出了一种新颖的多自由度(multi-DOF)压电超声马达(USM)设计。电机设计的主要思想是将磁球型转子和两个相对放置的环形压电致动器组合为一个机构。这种结构增加了冲击力并且允许球体以更高的扭矩旋转。 USM开发的主要目的是设计一种用于小型卫星的姿态控制系统的电动机。当球旋转到所需位置并且磁场与地球的磁偶极同步时,将使用带有磁偶极子的永磁球进行定向和定位。而且,所提出的电动机可以安装并用于机器人系统,激光束操纵等。该系统具有最少的部件数量,较小的重量和较高的可靠性。数值模拟和实验研究被用来验证USM的工作原理。压电执行器的数值模拟用于执行模态频率和谐波响应分析。进行了实验研究,以测量压电电动机的机械和电气特性。

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