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Working Mechanism of Nonresonance Friction in Driving Linear Piezoelectric Motors with Rigid Shaking Beam

机译:刚性振动梁驱动线性压电马达非共振摩擦的工作机理

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摘要

A kind of nonresonance shaking beam motors is proposed with the advantages of simple structure, easy processing, and low cost due to its wide application prospects in precision positioning technology and precision instruments. The normal vibration model between the stator and slider is divided into contact and noncontact types to investigate the nonresonance friction drive principle for this motor. The microscopic kinematics model for stator protruding section and the interface friction model for motor systems during both operating stages are established. Accordingly, the trajectory of the stator protruding section consists of two different elliptical motions, which differ from those of resonance-type motors. The output characteristic of the nonresonance shaking beam motor is proposed under steady working conditions with reference to the research method of standing-wave-type ultrasonic motors. Numerical analysis is used to simulate the normal vibration and mechanical output characteristics of the motor. Experimental and theoretical data fitting validates the numerical analysis results and allows the future optimization of nonresonance-type motors.
机译:由于其在精密定位技术和精密仪器中的广泛应用前景,提出了一种结构简单,易于加工,成本低廉的无共振摇梁电动机。定子和滑块之间的正常振动模型分为接触型和非接触型,以研究该电动机的非共振摩擦驱动原理。建立了两个工作阶段的定子凸出部分的微观运动学模型和电动机系统的界面摩擦模型。因此,定子突出部的轨迹由与共振型电动机不同的两个椭圆运动构成。结合驻波型超声电动机的研究方法,提出了在稳定工况下非共振摇梁电动机的输出特性。数值分析用于模拟电动机的正常振动和机械输出特性。实验和理论数据拟合验证了数值分析结果,并允许将来对非谐振型电动机进行优化。

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