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Interferometric Characterization of an XY Piezoeletric Nanopositioner: Linearity9 Hysteresis and Frequency Response

机译:XY压电纳米定位器的干涉测量特性:线性9磁滞和频率响应

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Piezoelectric motors have been considered successors of electromagnetic motors in areas such as robot joints, high precision machines, micro robots and MEMS (Micro-Electro-Mechanical Systems). The main interest in this work is the investigation of an XY flextensional positioner adapted for future applications as a rotary piezoelectric motor. To perform this task, the mechanical deformation analysis of the actuator structure was evaluated using finite element software. The results obtained with these simulations were validated using an optical phase detection technique using laser interferometry. Information regarding the linearity between applied voltage and generated displacement, hysteresis, frequency response of displacement and mechanical resonances of the actuator were measured between 0 and 3500 Hz. Simulation and experimental results have brought to light many technical issues that will lead to further investigations, helping the improvement the system in future works.
机译:在机器人关节,高精度机器,微型机器人和MEMS(微机电系统)等领域,压电电机已被视为电磁电机的后继产品。这项工作的主要兴趣是研究适合将来用作旋转压电马达的XY挠性定位器。为了执行此任务,使用有限元软件评估了执行器结构的机械变形分析。通过使用激光干涉术的光学相位检测技术,可以验证通过这些模拟获得的结果。在0至3500 Hz之间测量了有关施加电压与产生的位移,滞后,位移的频率响应以及执行器的机械共振之间的线性的信息。仿真和实验结果揭示了许多技术问题,这些问题将导致进一步的研究,从而有助于在将来的工作中改进该系统。

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