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首页> 外文期刊>Journal of Sound and Vibration >Electromechanical modelling of a bistable plate with Macro Fiber Composites under nonlinear vibrations
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Electromechanical modelling of a bistable plate with Macro Fiber Composites under nonlinear vibrations

机译:非线性振动下宏观纤维复合材料的双稳态板的机电建模

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摘要

Vibrational broadband energy harvesting has been the most focused application of bistable composite plates paired with piezoelectric materials due to their wide array of nonlinear responses at low frequencies. Various cross-well behaviors between the two potential wells allow large amplitudes and broadband characteristics favorable for generating ample power even away from resonance. With most past works being experimental, there are limitations in the available literature for validated model predictions of the electromechanical response resulting from cross-well dynamics under harmonic excitation. This paper presents the formulation, implementation, and experimental validation of the nonlinear analytical model for the rectangular piezoelectrically generated bistable laminate with a fixed center consisting of Macro Fiber Composites (MFC) in a cross-ply layup. The full range of nonlinear responses observed in tests are predicted by the simulated electromechanical equations of motion such as intermittency, limit cycle, chaotic, and subharmonic oscillations. These responses and the corresponding voltage and power outputs are investigated for a range of excitation parameters using both time and frequency domain analysis, and they show good agreement with experimental results. (C) 2019 Elsevier Ltd. All rights reserved.
机译:振动宽带能量收集已与压电材料配对双稳态复合材料板的最集中的应用程序,由于其广泛的在低频的非线性响应。两个势阱之间的各种横井行为允许大振幅和宽频带特性有利用于产生充足的功率甚至远离谐振。由于大多数过往的作品是实验性的,也有在现有文献的局限性从下谐波激励井间动态产生的机电响应的验证模型预测。本文介绍了制定,执行,和实验用在交叉铺层由宏纤维复合材料(MFC)的固定中心在矩形压电产生双稳态层压非线性分析模型的验证。在试验中观察到的非线性响应的全部范围是由运动的模拟机电式如间歇,极限周期,乱,次谐波振荡的预测。这些响应和相应的电压和功率输出进行了研究用于一系列的使用时间和频域分析的激励参数,并且它们显示出与实验结果吻合良好。 (c)2019 Elsevier Ltd.保留所有权利。

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