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Modeling and identification of nonlinear electroelastic and dissipative parameters for PZT-5A and PZT-5H bimorphs: a dynamical systems approach

机译:PZT-5A和PZT-5H双压电晶片的非线性电弹性和耗散参数的建模和识别:动力学系统方法

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Electroelastic and dissipative nonlinearities of commonly used soft piezoelectrics (PZT-5A and PZT-5H) are pronounced in various engineering applications such as actuation, sensing, vibration control, and most recently, in energy harvesting from dynamical systems. The present work investigates the nonlinear nonconservative dynamic behavior of bimorph piezoelectric cantilevers under low-to-high excitation levels with a focus on most popular soft piezoceramics: PZT-5A and PZT-5H. A unified mathematical framework we recently developed is analyzed by using the method of harmonic balance to identify and validate nonlinear system parameters based on a set of rigorous experiments for different samples.
机译:常用的软压电材料(PZT-5A和PZT-5H)的电弹性和耗散非线性在各种工程应用(例如致动,传感,振动控制)以及最近从动力系统中收集能量的过程中都表现出来。本工作研究了从低到高激发水平下双压电晶片压电悬臂的非线性非保守动力学行为,重点是最流行的软压电陶瓷:PZT-5A和PZT-5H。我们使用谐波平衡的方法,基于一组针对不同样本的严格实验,分析并验证了非线性系统参数,从而分析了我们最近开发的统一数学框架。

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