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A tunable nonlinear vibration energy harvester based on a magnetically-sprung resonator using ring magnets

机译:基于环形弹簧磁悬浮谐振器的可调非线性振动能量采集器

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This paper presents a novel design of a magnetically-sprung mechanical resonator for electromagnetic vibration energy harvesting. The proposed resonator consists of a moving magnet encapsulated in a cylinder and two fixed ring magnets fitted on the cylinder suspending the moving magnet between them. The magnetic poles of the ring magnets are arranged so that the face opposed to the moving magnet has the opposite polarity. Thanks to this arrangement, the ring magnet attracts the moving magnet when it is far, but repels it when it comes close. This means that a single ring magnet can stably hold the moving magnet at its equilibrium, and the magnetic force between them is highly nonlinear. As a result, the overall restoring force-displacement relationship shows variety of nonlinear characteristics, from high-stiffness monostability to low-stiffness essential nonlinearity and even bistability, depending on the distance between the ring magnets. Simplified and detailed mathematical models of the proposed magnetic spring are presented to understand the dependence of the force-displacement characteristics on the design parameters. The numerical model of a prototype harvester is investigated to demonstrate the tunability of the resonance frequency by adjusting the axial position of the ring magnets.
机译:本文提出了一种用于电磁振动能量收集的磁性弹簧机械谐振器的新颖设计。所提出的谐振器包括封装在汽缸中的移动磁铁和安装在汽缸上的两个固定环磁体悬挂在它们之间。环形磁体的磁极布置成使得与移动磁铁相对的面具有相反的极性。由于这种布置,环磁铁在远处吸引移动磁铁,但在接近时击退它。这意味着单个环磁体可以在其平衡处稳定地将移动磁体保持在,并且它们之间的磁力是高度的非线性的。结果,整体恢复力 - 位移关系显示出各种非线性特性,从高刚度单稳定性到低刚度的根本原因非线性甚至双稳态,这取决于环形磁体之间的距离。提出了所提出的磁性弹簧的简化和详细的数学模型,以了解力 - 位移特性对设计参数的依赖性。研究了原型收割机的数值模型,通过调节环磁体的轴向位置来证明共振频率的可调性。

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