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A new permanent magnetic friction damper device for passive energy dissipation

机译:一种用于无源消能的新型永磁摩擦阻尼器装置

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This paper summarizes the development of a new permanent magnetic friction damper (PMFD) device designed to protect structures during earthquakes. The device is based on the concept that when two permanent magnetic strips are osculated, magnetic attraction is produced and the magnitude can be adjusted and predicted by changing the area of the contact surface of the strips. Thus, the controlling force of the PMFD device varies continuously with the response of the structure and thereby overcomes the drawbacks of conventional friction dampers, the force models for which are invariable. We performed shaking table tests and numerical studies for a five-story steel frame structure fitted with PMFD devices; the results demonstrate that the new device effectively reduces the seismic response of a structure due to its excellent energy dissipation capacity. Moreover, the controlling force supplied by the new PMFD device can be adaptively adjusted according to the magnitude of the excitations. Therefore, the new PMFD device presents a viable alternative to conventional friction-based earthquake-resistant designs both for new construction and for upgrading existing structures.
机译:本文总结了一种新型的永磁摩擦阻尼器(PMFD)装置的开发,该装置旨在保护地震结构。该设备基于以下概念:当两个永久磁条闭合时,会产生磁吸力,并且可以通过更改磁条的接触面的面积来调整和预测其大小。因此,PMFD装置的控制力随着结构的响应而连续变化,从而克服了传统的摩擦阻尼器的缺点,传统的摩擦阻尼器的力模型是不变的。我们对装有PMFD装置的五层钢框架结构进行了振动台测试和数值研究。结果表明,新设备由于其出色的能量消散能力,有效地降低了结构的地震响应。而且,可以根据激励的大小来自适应地调节由新的PMFD装置提供的控制力。因此,无论是用于新建结构还是用于升级现有结构,新型PMFD装置都可以替代传统的基于摩擦的抗震设计。

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