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Preliminary Study of Optimum Piezoelectric Cross-Ply Composites for Energy Harvesting

机译:用于能量收集的最佳压电交叉层复合材料的初步研究

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摘要

Energy harvesting devices based on a piezoelectric material attached to asymmetric bistable laminate plates have been shown to exhibit high levels of power extraction over a wide range of frequencies. This paper optimizes for the design of bistable composites combined with piezoelectrics for energy harvesting applications. The electrical energy generated during state-change, or “snap-through,” is maximized through variation in ply thicknesses and rectangular laminate edge lengths. The design is constrained by a bistability constraint and limits on both the magnitude of deflection and the force required for the reversible actuation. Optimum solutions are obtained for differing numbers of plies and the numerical investigation results are discussed.
机译:已经表明,基于附着在不对称双稳态层压板上的压电材料的能量收集装置在很宽的频率范围内表现出高水平的功率提取。本文针对能量收集应用中与压电结合的双稳态复合材料的设计进行了优化。通过改变层厚度和矩形层压板边缘长度,可以最大程度地提高状态更改或“直通”过程中产生的电能。该设计受到双稳态约束的限制,并且对挠曲的大小和可逆驱动所需的力都进行了限制。获得了不同层数的最优解,并讨论了数值研究结果。

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