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首页> 外文期刊>Journal of Engineering Mechanics >Seismic response control of building structures with superelastic shape memory alloy wire dampers
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Seismic response control of building structures with superelastic shape memory alloy wire dampers

机译:超弹性形状记忆合金线阻尼器对建筑结构的地震响应控制

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摘要

This paper presents a simulation-based benchmark control study in which shape memory alloy (SMA) wire dampers are utilized to control the seismic response of a three-story nonlinear steel frame building. The SMA wire damper uses superelastic Nitinol wires for energy dissipation because of its high fatigue life and large recoverable strain. An analytical model which considers the training effect of SMA wires is used to describe the stress-strain relationship of superelastic SMA wires. The performance of SMA wire dampers is investigated in the framework of the third-generation benchmark problem on structural control. A comparative study of the seismic response control performance of SMA wire dampers with either unprestrained or prestrained SMA wires was also conducted. The results of this simulation-based benchmark control study show that SMA wire dampers, as a passive structure control measure, can effectively reduce the seismic responses of the three-story nonlinear benchmark building structure and has the potential to withstand several design earthquakes without the need for repair.
机译:本文提出了一种基于模拟的基准控制研究,其中使用形状记忆合金(SMA)线阻尼器来控制三层非线性钢框架建筑的地震响应。 SMA线阻尼器使用超弹性镍钛诺线进行能量消散,因为它具有较高的疲劳寿命和较大的可恢复应变。考虑SMA线的训练效果的分析模型被用来描述超弹性SMA线的应力-应变关系。在结构控制的第三代基准问题的框架内研究了SMA线阻尼器的性能。还对带有未预紧或预紧SMA线的SMA线阻尼器的地震响应控制性能进行了比较研究。基于模拟的基准控制研究的结果表明,SMA线阻尼器作为一种被动结构控制措施,可以有效降低三层非线性基准建筑结构的地震响应,并且有可能承受多次设计地震而无需进行维修。

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