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Simultaneous Passive Broadband Vibration Suppression and Energy Harvesting with Multifunctional Metastructures

机译:具有多功能性多功能性型号的无源宽带振动抑制与能量收集

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The research presented in this paper focuses on a unique multifunctional structural design that not only absorbs vibration at desired frequency bands, but also extracts significant amounts of electrical energy. This is accomplished by first designing an array of low-frequency resonators to be integrated into a larger host structure. This array of resonators can contribute not only to static requirements, e.g., stiffness, strength, mass, etc., of the host structure but the array also functions as a distributed system of passive vibration absorbers. Structures having these distributed vibration absorber systems are known as metastructures. Here, the authors present a unique absorber design referred to as a zigzag beam, which can have a natural frequency an order of magnitude lower than that of a basic cantilever beam of the same scale. It will be shown that the zigzag beams can be designed with an added layer of piezoelectric material, which allows them to harvest significant amounts of electrical power as they suppress vibration of the host structure. This paper includes details of the fully-coupled electromechanical analytical and numerical models for energy harvesting metastructures. Experimental results used to validate the proposed modeling methods will be discussed. Lastly, results of a multi-objective design optimization will be presented and discussed. Results of the optimization study were able to show that allowing only an 82 % increase in the host structure vibration could yield more than a 1500 % increase in total power output. Other results show that the power output (or absorber motion) could be increased 241% without increasing host structure vibrations due to multiple design solutions existing at fixed host structure vibration levels.
机译:本文提出的研究侧重于独特的多功能结构设计,不仅在所需频带处吸收振动,而且还提取大量电能。这是通过首先设计一系列低频谐振器阵列来实现,以集成到更大的主机结构中。该谐振器阵列不仅可以贡献宿主结构的静态要求,例如刚度,强度,质量等,但阵列也用作被动振动吸收器的分布式系统。具有这些分布式减振器系统的结构称为机构。这里,作者呈现了一种独特的吸收器设计,称为Z字形光束,其可以具有低于相同规模的基本悬臂梁的级的自然频率。结果表明,Z字形光束可以设计有附加的压电材料层,其允许它们收集大量电力,因为它们抑制了宿主结构的振动。本文包括用于能量收集机构的全耦合机电分析和数值模型的细节。将讨论用于验证所提出的建模方法的实验结果。最后,将介绍和讨论多目标设计优化的结果。优化研究的结果能够表明,允许仅82%的宿主振动增加82%,可以产生超过1500%的总功率输出增加。其他结果表明,由于固定宿主结构振动水平存在的多种设计解决方案,功率输出(或吸收器运动)可以增加241%而不会增加主机结构振动。

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