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Negative Stiffness Device for Seismic Protection of Structures: Shake Table Testing of a Seismically Isolated Structure

机译:用于结构抗震的负刚度装置:隔震结构的振动台测试

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The concept of apparent weakening by adding true negative stiffness to a structure has been previously introduced by the authors in order to reduce simultaneous drifts, accelerations, and displacements in a structure without yielding or permanent deformation in the main system. A novel negative stiffness device (NSD) that generates true negative stiffness has been developed, built, and tested and has been previously described by the authors in terms of operation and analytical and numerical modeling. This paper presents results that represent proof-of-concept for weakening with the use of the NSD based on the shake table testing of a 3-story seismically isolated structure, equipped with these devices complemented by viscous dampers. The NSD is shown to have a significant effect on the superstructure response by reducing floor accelerations, story drift, and the base shear and upon the addition of dampers, also results in a reduction in isolator displacements. Moreover, this paper provides validation of the analytical models that were previously developed by comparison of analytical and experimental results. (C) 2016 American Society of Civil Engineers.
机译:为了减少结构中的同时漂移,加速和位移,而不会在主系统中产生永久变形,作者先前已经提出了通过向结构中添加真正的负刚度来明显减弱的概念。已经开发,制造和测试了一种新型的产生负负刚度的负刚度装置(NSD),作者先前已经在操作,分析和数值模型方面对其进行了描述。本文介绍的结果代表了使用NSD进行削弱的概念验证,该结果基于3层地震隔震结构的振动台测试,配备了这些设备和粘性阻尼器。 NSD通过降低地板加速度,层间位移和基础剪力以及增加阻尼器,对上部结构响应产生了显着影响,并且还增加了减震器的位移。此外,本文提供了对先前通过比较分析结果和实验结果而开发的分析模型的验证。 (C)2016年美国土木工程师学会。

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