Horizontal Vibration Transmission Characteristics of a Magnetic Levitation Type Seismic Isolation Model Device with Stable Levitation System

Y. Nagasaki, Gen Kamada, T. Katana, S. Sasaki, D. Miyagi, M. Tsuda
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Abstract

Synopsis: This paper discusses the demonstration of a stable levitation (SL) system for a magnetic levitation type seismic isolation device using a high-temperature superconducting (HTS) bulk. The SL system utilizes a restoring force between an HTS bulk and permanent magnet (PM) to maintain the stable levitation of a base-isolation object. We first measured the restoring force between the HTS bulk and PM, and then demonstrated the performance of the SL system using a magnetic levitation type seismic isolation model device with a radial arrangement of HTS bulks and a PM rail. The SL system with the HTS bulk can reduce small vibration and displacement during the normal period of operation without experiencing a large disturbance. We also demonstrated that, when a large disturbance was applied, the transmission of horizontal vibration to the base-isolation object via the SL system was eliminated by decoupling the magnetic coupling between the HTS bulk and PM. Furthermore, the vibration transmissibility at any vibration frequency to the base-isolation object was reduced by incorporating an HTS bulk damper and eddy current damper in the model device. These results suggest that a SL system used together with an HTS bulk can realize both the stable levitation of a base-isolation object during the normal period of operation as well as the elimination of the horizontal vibration transmission when a large vibration is applied.
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具有稳定悬浮系统的磁悬浮型隔震模型装置水平振动传递特性
简介:本文讨论了使用高温超导(HTS)块体的磁悬浮式隔震装置的稳定悬浮(SL)系统的演示。SL系统利用HTS块体和永磁体(PM)之间的恢复力来维持基础隔离物体的稳定悬浮。我们首先测量了HTS块体和PM之间的恢复力,然后使用具有HTS块体径向布置和PM轨道的磁悬浮型隔震模型装置演示了SL系统的性能。具有HTS体积的SL系统可以在正常运行期间减少较小的振动和位移,而不会受到较大的干扰。我们还证明,当施加大扰动时,通过解耦HTS本体和PM之间的磁耦合,消除了通过SL系统向基础隔离对象传递的水平振动。此外,通过在模型装置中加入HTS大块阻尼器和涡流阻尼器,降低了在任何振动频率下到基础隔离对象的振动传递性。这些结果表明,与HTS块体一起使用的SL系统既可以在正常运行期间实现基础隔离物体的稳定悬浮,也可以在施加大振动时消除水平振动传递。
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