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Seismic behaviour of self-centring braced frame buildings with reusable hysteretic damping brace

机译:具有可重复使用的滞后阻尼支撑的自定心支撑框架结构的抗震性能

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This paper presents the seismic behaviour of a concentrically braced frame system with self-centring capability, in which a special type of bracing element termed reusable hysteretic damping brace (RHDB) is used. The RHDB is a passive energy dissipation device with its core energy-dissipating component made of superelastic Nitinol wires. Compared with conventional bracing in steel structures, RHDB has a few prominent performance characteristics: damage free under frequent and design basis earthquakes in earthquake prone areas; minimal residual drifts due to the self-centring capability of RHDB frame; and ability to survive several strong earthquakes without the need for repair or replacement. This paper also includes a brief discussion of the RHDB's mechanical configuration and analytical model for RHDB. The seismic performance study of RHDB frame was carried out through a non-linear time history analysis of 3-storey and 6-storey RHDB frame buildings subjected to two suites of 20 earthquake ground motions. The analysis results were compared with buckling-restrained brace (BRB) frames. This study shows that RHDB frame has a potential to outperform BRB frames by eliminating the residual drift problem.
机译:本文介绍了具有自定心功能的同心支撑框架系统的抗震性能,其中使用一种称为可重复使用的滞回阻尼支撑(RHDB)的特殊类型的支撑元件。 RHDB是一种被动式耗能设备,其核心耗能组件由超弹性镍钛诺线制成。与钢结构中的传统支撑相比,RHDB具有一些突出的性能特征:在地震多发地区的频繁地震和设计基准地震中不受破坏;由于RHDB帧的自动居中功能,残留漂移最小;无需维修或更换即可抵抗几次强地震的能力。本文还简要讨论了RHDB的机械配置和RHDB的分析模型。 RHDB框架的抗震性能研究是通过对3层和6层RHDB框架建筑物进行两套20次地震地震动的非线性时程分析进行的。将分析结果与屈曲约束支撑(BRB)框架进行了比较。这项研究表明,通过消除残留漂移问题,RHDB框架有可能胜过BRB框架。

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