Dynamics analysis of microactuator with PZT drivers based on inertia-friction driving principle

Li-ning Sun, Hai-Chu Chen, Man-tian Li
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引用次数: 1

Abstract

Using piezoelectric ceramics as micro driving elements, based on the inertia-friction driving principle, a ball base microactuator is designed in this paper. It has centimeter scale's rotate displacements micro/nanometer scale's rotate positioning precision and three degrees of freedom. It detailed analyzes the discharge of PZT and its influence on the signal waveform generated by hard circuits. Especially, it divides the inherent discharge time of PZT into three small stages to analyze the kinematics and dynamics characteristics of the metal ball on each small stage. Kinematics and dynamics mathematical model of the metal ball on each small stage are set up. An impact force model acts on the metal ball is set up based on the momentum law. A back rotation model of the ball also set up in this paper. Experimentations prove the mathematical model of back rotation is reasonable in some degree.
基于惯性-摩擦驱动原理的压电陶瓷微动器动力学分析
本文以压电陶瓷为微驱动元件,基于惯性摩擦驱动原理,设计了一种球座微执行器。具有厘米级的旋转位移、微/纳米级的旋转定位精度和三个自由度。详细分析了压电陶瓷的放电特性及其对硬电路产生的信号波形的影响。特别地,将压电陶瓷的固有放电时间划分为三个小阶段,分析了每个小阶段金属球的运动学和动力学特性。建立了金属球在各小舞台上的运动学和动力学数学模型。基于动量定律,建立了作用在金属球上的冲击力模型。本文还建立了球的反向旋转模型。实验证明,该数学模型在一定程度上是合理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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