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Performance based seismic design of steel braced frame system with self-centering friction damping brace

机译:自定心摩擦阻尼支撑的钢支撑框架体系基于性能的抗震设计

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This paper presents a displacement-based seismic design methodology for steel concentrically braced frame (CBF) systems with a special type of bracing element termed self-centering friction damping brace (SFDB). The SFDB is a passive energy dissipation device with its core re-centering component made of stranded superelastic Nitinol wires while enhanced energy dissipation mechanism of the SFDB is achieved through friction. Compared with conventional braces for steel frame buildings, SFDB frame has a few desirable performance characteristics such as minimal residual drifts and its ability to withstand several design basis earthquakes without the need for brace replacement. A displacement-based design procedure for proportioning SFDB is proposed in this paper. A 3-story design example is presented to illustrate the design method. Nonlinear pushover and time history analysis of the 3-story CBF building is performed to validate the effectiveness of the proposed design method. The results of the nonlinear time history and pushover analysis show that with careful design the SFDB frame can achieve a seismic response level comparable to that of the BRB frame while having significantly reduced residual drifts. The SFDB thus has a potential to establish a new type of CBF systems with self-centering capability.
机译:本文介绍了一种用于钢同心支撑框架(CBF)系统的基于位移的抗震设计方法,该系统具有一种称为自对中摩擦阻尼支撑(SFDB)的特殊类型的支撑元件。 SFDB是一种被动式耗能设备,其核心重心组件由绞合的超弹性镍钛诺线制成,而SFDB的增强的耗能机制是通过摩擦实现的。与钢框架建筑的传统支撑相比,SFDB框架具有一些理想的性能特征,例如最小的残余漂移以及无需更换支撑即可承受多种设计基准地震的能力。本文提出了一种基于位移的SFDB比例设计程序。提出了一个3层楼的设计实例来说明设计方法。进行了3层CBF建筑物的非线性推覆和时程分析,以验证所提出设计方法的有效性。非线性时程和推覆分析的结果表明,经过精心设计,SFDB框架可以达到与BRB框架相当的地震响应水平,同时残余位移也大大降低。因此,SFDB有可能建立具有自定心功能的新型CBF系统。

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