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Cylindrical ultrasonic linear microactuator based on quasi-traveling wave propagation on a thin film metallic glass pipe supported by a piezoelectric ceramic tube

机译:基于准行波在压电陶瓷管支撑的薄膜金属玻璃管上传播的圆柱形超声线性微执行器

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摘要

A novel ultrasonic linear microactuator with a circular cylindrical stator and slider structure is presented. The stator consists of a cylindrical piezoelectric ceramic tube and an elastic material, a thin film metallic glass (TFMG) pipe. In finite element simulations, a quasi-traveling wave is generated on the TFMG pipe, and trajectories of particles on the pipe are determined to be elliptical motion. There is good agreement between the simulations and measurement results for the vibration of the fabricated stator. Bi-directional motion of the slider is Successfully observed at 613 kHz, and the maximum velocity is about 25 mm/s at 30 V.
机译:提出了一种新颖的具有圆柱形定子和滑块结构的超声线性微执行器。定子由圆柱形压电陶瓷管和弹性材料,薄膜金属玻璃(TFMG)管组成。在有限元模拟中,在TFMG管道上产生准行波,并将管道上的粒子轨迹确定为椭圆运动。在仿真和测量结果之间,对于制成的定子的振动有很好的一致性。在613 kHz处成功观察到滑块的双向运动,在30 V时最大速度约为25 mm / s。

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