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用于宽带、低频和低振幅振动的无铅压电能量收集器的设计与开发

Design and Development of a Lead-Freepiezoelectric Energy Harvester for Wideband, Low Frequency, and Low Amplitude Vibrations.

作者信息

Kumari Neetu, Rakotondrabe Micky

机构信息

Department of Automatic Control and Micro-Mechatronic Systems, FEMTO-ST Institute, Université Bourgogne Franche-Comté, CNRS, 24 rue Alain Savary, 25000 Besançon, France.

LGP Laboratory, National School of Engineering in Tarbes (ENIT-INPT), University of Toulouse, 65000 Tarbes, France.

出版信息

Micromachines (Basel). 2021 Dec 10;12(12):1537. doi: 10.3390/mi12121537.

Abstract

In recent years, energy harvesting from ambient vibrations using piezoelectric materials has become the center of attention due to the fact that it has the potential to replace batteries, providing an easy way to power wireless and low power sensors and electronic devices. Piezoelectric material has been extensively used in energy harvesting technologies. However, the most commercially available and widely used piezoelectric materials are lead-based, Pb [ZrxTi1-x] O3 (PZT), which contains more than 60 weight percent lead (Pb). Due to its extremely hazardous effects on lead elements, there is a strong need to substitute PZT with new lead-free materials that have comparable properties to those of PZT. Lead-free lithium niobate (LiNbO) piezoelectric material can be considered as a substitute for lead-based piezoelectric materials for vibrational energy scavenging applications. LiNbO crystal has a lower dielectric constant comparison to the conventional piezoceramics (for instance, PZT); however, at the same time, LiNbO (LN) single crystal presents a figure of merits similar to that of PZT, which makes it the most suitable choice for a vibrational energy harvester based on lead-free materials. The implementation was carried out using a global optimization approach including a thick single-crystal film on a metal substrate with optimized clamped capacitance for better impedance matching conditions. A lot of research shows that standard designs such as linear piezoelectric energy harvesters are not a prominent solution as they can only operate in a narrow bandwidth because of their single high resonant peak in their frequency spectrum. In this paper, we propose, and experimentally validate, a novel lead-free piezoelectric energy harvester to harness electrical energy from wideband, low-frequency, and low-amplitude ambient vibration. To reach this target, the harvester is designed to combine multi-frequency and nonlinear techniques. The proposed energy harvesting system consists of six piezoelectric cantilevers of different sizes and different resonant frequencies. Each is based on lead-free lithium niobate piezoelectric material coupled with a shape memory alloy (nitinol) substrate. The design is in the form of a circular ring to which the cantilevers are embedded to create nonlinear behavior when excited with ambient vibrations. The finite element simulation and the experimental results confirm that the proposed lead-free harvester design is efficient at low frequencies, particularly different frequencies below 250 Hz.

摘要

近年来,利用压电材料从环境振动中收集能量已成为关注焦点,因为它有潜力取代电池,为无线和低功耗传感器及电子设备提供一种简单的供电方式。压电材料已广泛应用于能量收集技术。然而,最具商业可行性且广泛使用的压电材料是铅基的Pb[ZrxTi1 - x]O3(PZT),其铅(Pb)含量超过60重量百分比。由于铅元素具有极大危害,迫切需要用性能与PZT相当的新型无铅材料替代PZT。无铅铌酸锂(LiNbO)压电材料可被视为用于振动能量收集应用的铅基压电材料的替代品。与传统压电陶瓷(如PZT)相比,LiNbO晶体的介电常数较低;然而,与此同时,LiNbO(LN)单晶呈现出与PZT相似的品质因数,这使其成为基于无铅材料的振动能量收集器的最合适选择。该实施是通过一种全局优化方法进行的,包括在金属基板上的厚单晶膜,并具有优化的夹持电容以实现更好的阻抗匹配条件。许多研究表明,诸如线性压电能量收集器之类的标准设计并非突出解决方案,因为它们由于频谱中单个高共振峰而只能在窄带宽内运行。在本文中,我们提出并通过实验验证了一种新型无铅压电能量收集器,用于从宽带、低频和低振幅环境振动中获取电能。为实现这一目标,该收集器设计为结合多频和非线性技术。所提出的能量收集系统由六个不同尺寸和不同共振频率的压电悬臂梁组成。每个悬臂梁基于无铅铌酸锂压电材料并与形状记忆合金(镍钛诺)基板耦合。该设计为圆环形式,悬臂梁嵌入其中,在受到环境振动激发时产生非线性行为。有限元模拟和实验结果证实,所提出的无铅收集器设计在低频下,特别是在250Hz以下的不同频率下是高效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c67b/8704632/7d821bafb61d/micromachines-12-01537-g001.jpg

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