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首页> 外文期刊>Journal of intelligent material systems and structures >Theoretical study and experimental identification of elastic-magnetic vibration isolation system
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Theoretical study and experimental identification of elastic-magnetic vibration isolation system

机译:弹磁隔振系统的理论研究与实验辨识

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摘要

A vibration isolation system featuring a combination of elastic and magnetic springs and viscous and magnetic damping is presented. A mechanical flat spring houses a permanent magnet that is levitated between two stationary magnets. A prototype of the isolator is manufactured. COMSOL models are developed for the mechanical and magnetic springs. Measured data and model simulations show that the magnets arrangement results in nonlinear magnetic spring with negative linear stiffness. The mechanical spring exhibits linear behavior with positive stiffness. Experiments are performed and a nonlinear dynamic model is developed. The fabricated isolator is characterized at low and high acceleration levels. Results from model show good agreement with measured data at lower acceleration levels. Slight mismatch between model and experiment is evident at higher accelerations. This mismatch is due to the existence of lateral vibrations that are not accounted for in the unidirectional model. Results show that the combination of mechanical flat spring and magnetic spring reduces the resonant frequency of the isolator. In addition, results confirm the ability of the isolator to attenuate vibrations higher than 11.91 Hz when excited at 2.4525 [m s(-2)].
机译:提出了一种具有弹性和磁性弹簧以及粘性和磁性阻尼的隔振系统。机械扁平弹簧容纳一个永磁体,该永磁体悬浮在两个固定磁体之间。制造了隔离器的原型。 COMSOL模型是为机械和电磁弹簧开发的。实测数据和模型仿真表明,磁体排列导致非线性磁性弹簧的线性刚度为负。机械弹簧表现出具有正刚度的线性行为。进行实验并建立非线性动力学模型。制成的隔离器具有低加速度和高加速度的特征。模型的结果表明,在较低的加速度水平下,测量数据具有良好的一致性。在较高的加速度下,模型与实验之间的轻微不匹配是明显的。这种不匹配是由于存在单向模型中未考虑的横向振动。结果表明,机械板簧和磁簧的组合降低了隔离器的谐振频率。此外,结果证实了当以2.4525 [m s(-2)]激发时,隔离器能够衰减高于11.91 Hz的振动。

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