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Dynamic modeling of 3-DOF pyramidal-shaped piezo-driven mechanism

机译:三自由度金字塔形压电驱动机构的动态建模

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摘要

A new pyramidal shaped 3-DOF piezo-driven mechanism is proposed, modeled, manufactured and tested. The mechanism, made of aluminum alloy (2024-T3), is equipped with three piezoelectric elements that are separated by 120° angle. This mechanism is designed to deliver elliptical motion in 3-D planes with minimum numbers of actuators subject to different frequencies and phase differences applied to the piezoelectric elements. The design procedure is driven based on modal analysis through Finite Element Method (FEM) to ensure that the relevant mode shapes at different planes take place at almost identical frequency. Furthermore, the dynamic modeling of the mechanism is carried out to show that the designated structure is able to provide different types of motions at different sets of phase differences applied to the three piezoelectric elements. Through dynamic modeling, the response at the tip of the mechanism (end effector) is estimated with regard to two types of displacement inputs imposed by piezoceramics at the contact point where the head of the piezoelectric actuators meets the structure of the mechanism. The two types of displacement inputs are calculated using the new methodology in terms of constitutive equations utilized for modeling the piezoelectric actuators. These inputs, known as the linear pure sinusoidal input and the nonlinear hysteretic input, are applied to the contact point in order to compare the response on tip of the mechanism to both linear and nonlinear signals.
机译:提出,建模,制造和测试了一种新型的金字塔形三自由度压电驱动机构。该机构由铝合金(2024-T3)制成,配有三个以120°角分开的压电元件。此机制旨在在3D平面中传递椭圆运动,同时使用最少数量的致动器,这些致动器会受到施加到压电元件的不同频率和相位差的影响。通过基于有限元方法(FEM)的模态分析来驱动设计过程,以确保不同平面上的相关模态形状几乎以相同的频率发生。此外,对该机构进行了动态建模,以表明指定的结构能够在施加到三个压电元件的不同相位差集下提供不同类型的运动。通过动态建模,针对压电陶瓷在压电执行器的头部与机械结构相遇的接触点施加的两种类型的位移输入,估算了机械(尖端执行器)尖端的响应。两种类型的位移输入是使用新方法根据用于建模压电执行器的本构方程来计算的。这些输入被称为线性纯正弦输入和非线性滞后输入,它们被应用于接触点,以便比较机构尖端对线性和非线性信号的响应。

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