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Modeling and simulation of a resonant bimorph actuator drive

机译:共振双压电晶片执行器驱动器的建模和仿真

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摘要

A rotary actuator driven by piezoelectric bimorphs has been developed for various smart structure applications. A rotary (roller) clutch rectifies bimorph oscillation into rotational motion to convert electrical to mechanical power. While prototype actuators perform well, they were designed with just engineering intuition. Here, a mathematical model of the actuator is developed. Using empirical data collected from a prototype actuator and a roller clutch, the mathematical model was tuned so that it predicted accurately the performance of the prototype. The model was then used to perform parameter studies and optimize the design of the actuator. The model predicts that performance can be significantly increased by making slight modifications to the prototype. Work to verify these predictions of the mathematical model is underway.
机译:已经开发了由压电双压电晶片驱动的旋转致动器,用于各种智能结构应用。旋转(滚子)离合器将双压电晶片振荡校正为旋转运动,以将电能转换为机械能。尽管原型执行器性能良好,但设计时仅凭工程上的直觉。在此,开发了执行器的数学模型。利用从原型执行器和滚子离合器收集的经验数据,对数学模型进行了调整,从而可以准确预测原型的性能。然后将该模型用于执行参数研究并优化执行器的设计。该模型预测,通过对原型进行一些修改,可以显着提高性能。正在验证这些数学模型预测的工作。

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