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首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >A lever-enhanced nonlinear energy sink absorber harvesting vibratory energy via giant magnetostrictive-piezoelectricity
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A lever-enhanced nonlinear energy sink absorber harvesting vibratory energy via giant magnetostrictive-piezoelectricity

机译:通过巨型磁致伸缩 - 压电收获振动能量的杠杆增强的非线性能量吸收器

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摘要

A closed detached response due to the resonance response interaction has a critical effect on vibration isolation and energy harvesting. In this paper, a promising novel approach by integrating a lever-type nonlinear energy sink (LNES) and a giant magnetostrictive-piezoelectric (GMP) energy harvester (LNES-GMP) for vibration isolation and energy harvesting is investigated. The method of harmonic balance is applied to trace the response and voltage of the system, and numerical results support the harmonic solutions. It can be noted that the occurrence of closed detached resonance response could dramatically increase the voltage of the system. Moreover, the structure of the LNES-GMP, such as the mass, nonlinear stiffness, and fulcrum location may influence the efficiency of vibration isolation and energy harvesting. Lastly, with an appropriate fulcrum location, the performance of the LNES-GMP, which contains less attached mass, is more improved than the traditional NES-GMP. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于谐振响应相互作用导致的闭合拆卸响应对振动隔离和能量收集具有关键影响。本文通过将杠杆式非线性能量水槽(LNES)和巨型磁致伸缩 - 压电(GMP)能量收割机(LNE-GMP)集成了一种有前途的新方法,用于振动隔离和能量收集。谐波平衡方法应用于跟踪系统的响应和电压,数值结果支持谐波解决方案。可以注意到,闭合分离的共振响应的发生可能会显着增加系统的电压。此外,LNE-GMP的结构,例如质量,非线性刚度和支点位置可能影响振动隔离和能量收集的效率。最后,通过适当的支点定位,LNES-GMP的性能含有较少的附着质量,比传统的NES-GMP更加改善。 (c)2020 Elsevier B.v.保留所有权利。

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