A quasi-zero stiffness energy harvesting isolator with triple negative stiffness

IF 3.8 2区 工程技术 Q1 ENGINEERING, MECHANICAL Acta Mechanica Sinica Pub Date : 2024-06-13 DOI:10.1007/s10409-024-23531-x
Xiangyu Cai  (, ), Tao Yang  (, ), Weiyang Qin  (, ), Zhongliang Xie  (, )
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Abstract

Vibration isolation for low frequency excitation and the power supply for low power monitoring sensors are important issues in bridge engineering. The main problem is how to effectively combine the vibration isolator with the energy harvester to form a multi-functional structure. In this paper, a system called quasi-zero stiffness energy harvesting isolator (QZS-EHI) with triple negative stiffness (TNS) is proposed. The TNS structure consists of linear springs, rigid links, sliders, and ring permanent magnets. Newton’s second law and Kirchhoff’s law construct dynamic equations of the QZS-EHI, and a comparison is made to contrast it with other QZS and linear isolators. The comparison field includes the QZS range, amplitude-frequency relationship, force transmissibility, and energy harvested power. The isolator can be applied to many engineering fields such as bridges, automobiles, and railway transportation. This paper selects bridge engineering as the main field for the dynamic analysis of this system. Considering the multi-span beam bridge, this paper compares different situations including the bridge with QZS-EHI support, with linear stiffness isolator support, and with single beam support. All results show that the QZS-EHI is not only better than the traditional isolator with linear stiffness under both harmonic and stochastic excitation, but also better than some QZS isolators with double or single negative stiffness in bridge vibration isolation and energy harvesting. Theoretical analysis is verified to correspond to the simulation analysis, which means the proposed QZS-EHI has practical application value.

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具有三倍负刚度的准零刚度能量采集隔离器
用于低频激励的隔振装置和用于低功率监测传感器的电源是桥梁工程中的重要问题。主要问题是如何将隔振器与能量收集器有效结合,形成多功能结构。本文提出了一种具有三重负刚度(TNS)的准零刚度能量收集隔振器(QZS-EHI)系统。TNS 结构由线性弹簧、刚性连接、滑块和环形永磁体组成。牛顿第二定律和基尔霍夫定律构建了 QZS-EHI 的动态方程,并将其与其他 QZS 和线性隔振器进行了对比。比较领域包括 QZS 范围、振幅频率关系、力传递性和能量采集功率。该隔离器可应用于许多工程领域,如桥梁、汽车和铁路运输。本文选择桥梁工程作为该系统动态分析的主要领域。考虑到多跨梁桥,本文对不同情况进行了比较,包括采用 QZS-EHI 支撑的桥梁、采用线性刚度隔振器支撑的桥梁和采用单梁支撑的桥梁。所有结果表明,在谐波和随机激励下,QZS-EHI 不仅优于线性刚度的传统隔振器,而且在桥梁隔振和能量收集方面优于一些双负刚度或单负刚度的 QZS 隔振器。理论分析与仿真分析结果一致,这说明所提出的 QZS-EHI 具有实际应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Mechanica Sinica
Acta Mechanica Sinica 物理-工程:机械
CiteScore
5.60
自引率
20.00%
发文量
1807
审稿时长
4 months
期刊介绍: Acta Mechanica Sinica, sponsored by the Chinese Society of Theoretical and Applied Mechanics, promotes scientific exchanges and collaboration among Chinese scientists in China and abroad. It features high quality, original papers in all aspects of mechanics and mechanical sciences. Not only does the journal explore the classical subdivisions of theoretical and applied mechanics such as solid and fluid mechanics, it also explores recently emerging areas such as biomechanics and nanomechanics. In addition, the journal investigates analytical, computational, and experimental progresses in all areas of mechanics. Lastly, it encourages research in interdisciplinary subjects, serving as a bridge between mechanics and other branches of engineering and the sciences. In addition to research papers, Acta Mechanica Sinica publishes reviews, notes, experimental techniques, scientific events, and other special topics of interest. Related subjects » Classical Continuum Physics - Computational Intelligence and Complexity - Mechanics
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