首页> 外文会议>ASME international mechanical engineering congress and exposition >COMPUTER SIMULATION AND MODELLING OF STANDING WAVE PIEZOELECTRIC ULTRASONIC MOTOR USING A SINGLE FLEXURAL VIBRATION RING TRANSDUCER
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COMPUTER SIMULATION AND MODELLING OF STANDING WAVE PIEZOELECTRIC ULTRASONIC MOTOR USING A SINGLE FLEXURAL VIBRATION RING TRANSDUCER

机译:单挠性振动环传感器对正弦波超声电机的计算机仿真与建模

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A rotary standing wave ultrasonic motor using single flexural ring transducer is developed and presented in this paper. The motor consists of three main components, the stator, rotor and housing unit. The stator is a piezoelectric transducer ring. The rotor is designed of a compact driving wheel and the shaft. The housing unit is made of a transparent thermoplastic Perspex material and is part of the motor working mechanism. The motor design, structure, working principles and modelling using finite element analysis is discussed and presented in this paper. The simulation and modelling using finite element analysis for the motor is used in the motor design development process. Finite element has been used to examine 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 ring, investigate the material deformation, defining the operating parameters for the motor and establish the principles of motion. The motor working principles is based on creating travelling waves vibration modes, of oscillating structures that are superimposed in the stator, generating elliptical micro motions at the stator tips. Pressing the rotor against the stator tips, using an elastic spring, the micro motions are converted into a rotary motion via the friction between the tips of the stator and the rotor. A prototype of the motor was fabricated and its characteristics measured. Experimental tests showed that the electrical working parameters are: Current: 100 m-amp's, Voltage: 100 volts, Frequency: 41.7kHz, typical speed of movement: 32 revolutions per minute, a resolution of less than 50um and maximum load of 1.5 Newton.
机译:使用单弯环换能器的旋转常设波超声波电动机研制起来,并介绍了本文。电机由三个主要部件,定子,转子和壳体单元组成。定子是压电换能器环。转子设计有紧凑的驱动轮和轴。壳体单元由透明的热塑性Perspex材料制成,并且是电动机工作机构的一部分。在本文中讨论并介绍了使用有限元分析的电动机设计,结构,工作原理和建模。电机设计开发过程中使用了使用电机有限元分析的仿真和建模。有限元通过执行一组方程的代数溶液来检查电动机结构,描述理想的模型结构,具有有限数量的变量。使用有限元分析的超声波电动机的建立的模拟和建模,以选择弯曲换能器环的材料,研究了材料变形,定义了电动机的操作参数并建立了运动原理。电动机工作原理基于产生叠加在定子中的振荡结构的行驶波振动模式,在定子尖端上产生椭圆微小运动。使用弹性弹簧将转子压在定子尖端上,通过定子和转子的尖端之间的摩擦将微动机转换成旋转运动。制造电动机的原型并测量其特性。实验试验表明,电气工作参数是:电流:100 M级,电压:100伏,频率:41.7kHz,典型的运动速度:每分钟32次,分辨率低于50um,最大负荷为1.5牛顿。

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