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A Linear Piezoelectric Linear Motor Driven by the In-plane Longitudinal and Bending Vibrations of an H-shaped Vibrator

机译:由H形振动器的平面内纵向和弯曲振动驱动的线性压电线性电动机

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In order to develop theoretical instructions for design of high performance linear motor, a piezoelectric linear motor based on an H-shaped vibrator is proposed, which employed the vibrator's 2nd bending vibration mode and 1st longitudinal planar vibration to drive the motor in this paper. Firstly, the driving principle of the motor is presented, and the elliptical motion generated on the driving end of the vertical bars of the vibrator is proved. Then, FEM simulation model is built for the vibrator, which is used to calculate the vibrator's working modes and to execute harmonic response analysis and sensitivity analysis for the vibrator. Furthermore, the vibration's optimal size is given and the motor assembly structure is designed. Finally, modal test is done for the vibrator to validate the anticipated work modes vibration and the bending vibration and longitudinal planar vibration could be 1.4ìm and 1.2ìm under normal drive.
机译:为了开发设计高性能线性电动机设计的理论指示,提出了一种基于H形振动器的压电线性电动机,其采用振动器的第二弯曲振动模式和第一纵向平面振动来驱动电动机。首先,呈现电动机的驱动原理,并且证明了在振动器的垂直条的驱动端产生的椭圆形运动。然后,为振动器构建有限元模拟模型,用于计算振动器的工作模式并对振动器执行谐波响应分析和灵敏度分析。此外,给出了振动的最佳尺寸,并且设计了电动机组件结构。最后,为振动器进行模态试验,以验证预期的工作模式振动,弯曲振动和纵向平面振动可以在正常驱动下1.4˚M和1.2˚M。

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