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首页> 外文期刊>Journal of intelligent material systems and structures >Seismic Performance Analysis of A Smart Base-isolation System Considering Dynamics of MR Elastomers
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Seismic Performance Analysis of A Smart Base-isolation System Considering Dynamics of MR Elastomers

机译:考虑MR弹性体动力学的智能基础隔震系统的抗震性能分析

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This article investigates a smart base-isolation system using magnetorheological (MR) elastomers, which are a new class of smart materials whose elastic modulus or stiffness can be adjusted depending on the magnitude of the applied magnetic field. The primary goals of this study are to develop a smart base-isolation model that represents the field-dependent dynamic behaviors of MR elastomers, to design and construct a scaled smart isolation system and a scaled building structure for a proof of concept study and to investigate the dynamic performance of the smart base-isolation in mitigating excessive vibrations of the scaled building structure under earthquake loadings. To this end, a dynamic model of an MR elastomer was first obtained based on characteristic test results of MR elastomers in shear mode. The dynamic model was then incorporated in a shear building model. Its effectiveness was validated by comparing the test results of a small-scale, single-story building structure coupled with the MR elastomer under harmonic excitations. After validating the MR elastomer-based base-isolation system, a further numerical study was performed to evaluate its effectiveness under seismic excitations. The results show that the proposed MR elastomer base-isolation system with the fuzzy logic control algorithm outperforms the conventional passive-type base isolation system in reducing the responses of the building structure for the seismic excitations considered in this study. The results further suggest that the feasibility of using MR elastomers as variable stiffness elements for enhancing the performance of conventional base-isolation systems.
机译:本文研究了一种使用磁流变(MR)弹性体的智能基础隔离系统,该系统是一类新型的智能材料,其弹性模量或刚度可以根据所施加磁场的大小进行调整。这项研究的主要目标是开发一个代表MR弹性体随场变化的动态行为的智能基础隔离模型,设计和构建一个按比例缩放的智能隔离系统和按比例缩放的建筑结构,以进行概念验证研究和调查智能基础隔离在减轻地震荷载作用下可缩放建筑结构的过度振动方面的动态性能。为此,基于MR弹性体在剪切模式下的特性测试结果,首先获得了MR弹性体的动力学模型。然后将动态模型合并到剪力建筑模型中。通过比较在谐波激励下与MR弹性体耦合的小型单层建筑结构的测试结果,验证了其有效性。在验证了基于MR弹性体的基础隔震系统之后,进行了进一步的数值研究,以评估其在地震激​​励下的有效性。结果表明,所提出的具有模糊逻辑控制算法的MR弹性体基础隔离系统在降低建筑物结构对地震激励的响应方面优于传统的被动型基础隔离系统。结果进一步表明,使用MR弹性体作为可变刚度元件来增强常规基础隔离系统的性能的可行性。

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