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Modeling and analysis of stretching strain in clamped-clamped beams for energy harvesting

机译:用于能量收集的夹钳梁中拉伸应变的建模与分析

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In this paper, the utilization of stretching strain that exists in clamped-clamped beam structures is investigated as a main source for energy harvesting from vibrations using a piezoelectric material. This technique eliminates the need for a substrate material, and reduces the electrodes configuration complexity, thus simplifies the fabrication process. This structure exhibits nonlinear dynamics under certain conditions, which is modeled as a single degree of freedom (SDoF) electromechanical system. The proposed model accuracy is then verified using finite element modeling (FEM). The results show a highly nonlinear system with a “Duffing” frequency response that can be used to design an ultra-wide bandwidth energy harvesting system suitable for practical applications. Using this technique a design of 9.9mm3 energy harvester is proposed using polyvinylidene fluoride (PVDF) that can generate up to 4μW from vibrations of 0.5g at 70Hz.
机译:在本文中,利用存在于压电材料中的振动作为能量收集的主要来源,研究了存在于夹紧梁结构中的拉伸应变的利用。该技术消除了对衬底材料的需求,并降低了电极配置的复杂性,从而简化了制造过程。这种结构在某些条件下表现出非线性动力学,将其建模为单自由度(SF)机电系统。然后使用有限元建模(FEM)验证提出的模型准确性。结果表明,具有“达芬”频率响应的高度非线性系统可用于设计适合实际应用的超宽带宽能量收集系统。利用该技术,提出了一种使用聚偏二氟乙烯(PVDF)的9.9mm3能量收集器的设计,该聚偏二氟乙烯可以通过70Hz的0.5g振动产生高达4μW的功率。

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