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A multi-layered polydimethylsiloxane structure for application in low-excitation, broadband and low frequency energy harvesting

机译:用于低激发,宽带和低频能量收集的多层聚二甲基硅氧烷结构

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Vibrational kinetic energy is a promising energy source that can be harvested due to its abundance in daily life, especially from human motion. This low frequency vibration poses a challenge in achieving a small device that is practical and wearable. Further, the effective energy harvesting of a linear structure is very limited to a narrow range of frequencies around the resonance. These two limitations call for the development of wide bandwidth energy harvesters that can work at a wider low frequency range. Using low Young's modulus material is a common technique to achieve a low resonant frequency energy harvester. Nonlinear bistability is a potential solution for bandwidth broadening. In this paper, a broadband low frequency vibrational energy harvester using multi-layered soft polydimethylsiloxane (PDMS) will be presented. First, a multi-layered PDMS structure was created by sandwiching a thicker PDMS with two thinner pre-stressed PDMS films. After releasing the prestresses, the multi-layered PDMS structure can settle into two cylindrical configurations. An analytical model that can predict the shapes of this multi-layered structure has been developed using classical lamination theory along with Rayleigh-Ritz approximation technique. Through this model, PDMS shapes can be easily predicted by changing various parameters such as the ratio of side length to thickness, prestrain levels, and Young's modulus. A multi-layered PDMS structure has been further proposed to be used as a bistable energy harvester. The soft PDMS allows working frequencies of lower than 15 Hz. The dynamic response of this harvester under small input excitation shows a softening spring system, before the strong nonlinear 'snap through' effect occurs. This softening spring system is able to broaden the bandwidth of the energy harvesting device. (C) 2014 Elsevier B.V. All rights reserved.
机译:振动动能是一种有前途的能源,由于其在日常生活中尤其是人体运动中的丰富性,可以被收集。这种低频振动对于实现实用且可穿戴的小型设备提出了挑战。此外,线性结构的有效能量收集非常限于共振周围的狭窄频率范围。这两个限制要求开发可在更宽的低频范围内工作的宽带能量采集器。使用低杨氏模量材料是实现低谐振频率能量收集器的常用技术。非线性双稳态是带宽扩展的潜在解决方案。在本文中,将介绍一种使用多层软聚二甲基硅氧烷(PDMS)的宽带低频振动能量采集器。首先,通过将较厚的PDMS与两层较薄的预应力PDMS膜夹在中间,创建了多层PDMS结构。释放预应力后,多层PDMS结构可以沉降为两个圆柱状结构。使用经典的层压理论以及瑞利-里兹(Rayleigh-Ritz)逼近技术,开发了一种可以预测这种多层结构形状的分析模型。通过该模型,可以通过更改各种参数(如边长与厚度的比,预应变水平和杨氏模量)轻松预测PDMS形状。进一步提出了多层PDMS结构用作双稳态能量收集器。软PDMS允许低于15 Hz的工作频率。该收割机在较小的输入激励下的动态响应显示出一个软化的弹簧系统,该弹簧系统在发生强烈的非线性“捕捉”效应之前。该软弹簧系统能够加宽能量收集装置的带宽。 (C)2014 Elsevier B.V.保留所有权利。

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