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首页> 外文期刊>Journal of vibration and control: JVC >The design of negative stiffness spring for precision vibration isolation using axially magnetized permanent magnet rings
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The design of negative stiffness spring for precision vibration isolation using axially magnetized permanent magnet rings

机译:轴向磁化永磁环的精密振动隔离负刚度弹簧的设计

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摘要

A negative stiffness element is always employed to generate high-static-low-dynamic stiffness characteristic of the vibration isolator, reduce the resonance frequency of the isolator, and improve the vibration isolation performance under low and ultra-low frequency excitation. In this paper, a new compact negative stiffness permanent magnetic spring (NSPMS) that is composed of two axial-magnetized permanent magnetic rings is proposed. An analytical expression of magnetic negative stiffness of the NSPMS is deduced by using the Coulombian model. After analyzing the effect of air-gap width, air-gap position, height difference between the inner ring and outer ring on the negative stiffness characteristic, a design procedure is proposed to realize the negative stiffness characteristic with a global minimum linear component and uniformity stiffness near the equilibrium position. Finally, an experimental prototype is developed to validate the effectiveness of the NSPMS. The experimental results show that combining a vibration isolator with the NSPMS in parallel can lower the natural frequency and improve the isolation performance of the isolator.
机译:始终采用负刚度元件来产生隔振器的高静态 - 低动态刚度特性,降低隔离器的谐振频率,并提高低频和超低频率激励下的隔振性能。本文提出了一种新的紧凑型负刚度永磁弹簧(NSPM),其由两个轴向磁化的永磁环组成。使用库仑模型推断出NSPM的磁性负刚度的分析表达。在分析空气间隙宽度,气隙位置,内圈和外圈之间的高度差的效果之后,提出了一种设计过程,实现了全球最小线性部件和均匀性刚度的负刚度特性靠近均衡位置。最后,开发了实验原型以验证NSPM的有效性。实验结果表明,将振动隔离器与NSPM平行相结合,可以降低自然频率,提高隔离器的隔离性能。

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