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Non-linear modelling of multilayer piezoelectric actuators in non-trivial configurations based on actuator design parameters and piezoelectric material properties

机译:基于执行器设计参数和压电材料特性的非平凡配置的多层压电执行器的非线性建模

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摘要

Current models of non-linear electromechanical behaviours of piezoactuators are mostly intended for actuator configurations where the strain of the piezoelectric material is directly used as the linear output. On the other hand, in the design of piezoactuators, there exist non-trivial configurations where the internal strains of the piezoelectric materials manifest externally in the form of bending and curving rather than simple elongation or contraction, it is also important to predict the non-linear performance of the actuator based on the design parameters. Therefore, it is the intent of this article to present a model that enables calculation of the quasi-static mechanical response of piezoelectric multilayer actuators in non-trivial configurations. It is based on the polarization hysteresis loop and butterfly curve of its constituent piezoelectric material. Using an energy-based formulation, the model takes into account the non-piezoelectric sections as well as the mechanical boundary conditions of the actuator. Furthermore, a three-layer lead zirconium titanate bimorph with both ends clamped is considered in this study. Model calculation of its relationship between input voltage Vand midpoint vertical displacement X is carried out based on ferroelectric hysteresis data of the bimorph material from the literature. The calculation results are then validated by measurements.
机译:压电执行器的非线性机电行为的当前模型主要用于将压电材料的应变直接用作线性输出的执行器配置。另一方面,在压电致动器的设计中,存在一些非平凡的配置,其中压电材料的内部应变以弯曲和弯曲的形式而不是简单的伸长或收缩而在外部表现出来,因此预测非激励性也很重要。基于设计参数的执行器线性性能。因此,本文的目的是提出一个模型,该模型能够计算非平凡配置下压电多层执行器的准静态机械响应。它基于构成压电材料的极化磁滞回线和蝶形曲线。使用基于能量的公式,该模型考虑了非压电部分以及执行器的机械边界条件。此外,在这项研究中考虑了两端均被夹紧的三层钛酸锆双晶铅。基于文献中双压电晶片材料的铁电磁滞数据,对输入电压V与中点垂直位移X之间的关系进行了模型计算。然后通过测量验证计算结果。

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