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Design and Simulation of Ultrasonic Linear Motor using Multilayer Ceramic Actuator

机译:多层陶瓷作动器的超声波直线电机的设计与仿真

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In comparison with conventional electromagnetic motors, ultrasonic motors have many advantages such as a large toque at the low velocity, good controllability, rapid response, quite operation, simple structure and non electromagnetic field induction, etc. These features have led to the development of various ultrasonic motors in many industrial fields. Hence, in this study, ultrasonic linear motor using multilayer structured ceramic actuator was designed and simulated using ANSYS of finite element method(FEM) simulator for investigating the optimum conditions of it. The ultrasonic linear motor studied in this paper was designed using the 1st longitudinal (LI) and 4th bending (B4) vibration. The size of ceramic actuator is 15 mm long and 5 mm wide. And one-layer thickness of actuator is 60um. The dimension of linear motor is 61 x 5 x 3 mm. The sectional size of projection is 1.5 x 5 mm. The driving voltage of the motor was very low as SVrms. With the increase of the number of piezoelectric ceramic layers, displacement of node was increased up to 21 layered ceramic actuator and then decreased. Maximum z displacement of node was about 7.02 tim at the 21 layered ultrasonic motor.
机译:与传统的电磁电动机相比,超声电动机具有许多优点,例如低速转矩大,可控性好,响应速度快,运行平稳,结构简单和无电磁场感应等。这些特点导致了各种电磁技术的发展。超声电机在许多工业领域。因此,在本研究中,设计了使用多层结构陶瓷致动器的超声波直线电机,并使用有限元方法(FEM)仿真器ANSYS对其进行了仿真,以研究其最佳条件。本文研究的超声线性电动机是根据第一纵向振动(LI)和第四弯曲振动(B4)设计的。陶瓷执行器的尺寸为15毫米长和5毫米宽。执行器的一层厚度为60um。直线电机的尺寸为61 x 5 x 3 mm。突起的截面尺寸为1.5 x 5毫米。电机的驱动电压非常低,为SVrms。随着压电陶瓷层数的增加,节点的位移增加到21层陶瓷致动器,然后减小。在21层超声电机上,节点的最大z位移约为7.02 tim。

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