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Seismic performance of a damage avoidance self-centring brace with collapse prevention mechanism

机译:具有防塌机制的避免损伤自对中支撑的抗震性能

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摘要

The Resilient Slip Friction Joint (RSFJ) has recently been developed and introduced to the construction industry. This joint is a friction-based energy dissipation device that owing to its special configuration can provide energy absorption and self-centring behaviour in one package. This device is most applicable when the designers consider a damage avoidance philosophy of design. One of the applications of this device is the RSFJ brace. In this bracing system, the required seismic performance is provided by the RSFJ and the rest of the brace components are aimed to stay elastic. This paper introduces the RSFJ bracing system including the collapse-prevention fuse. This built-in fuse works in a way that when the applied force exceeds the design load, the secondary fuse is activated and the RSFJ brace is still able to provide self-centring up to twice the target deformation with an axial force of up to 125 times of the target design force. The performance of this fuse is investigated by experimental tests on the component level and the results are presented. Moreover, a numerical model for a five story steel structure with RSFJ braces is developed and was subjected to non-linear static pushover and nonlinear dynamic time-history simulations in order to investigate the seismic performance of the proposed system. The findings of this research shows that the RSFJ brace system can offer substantial performance benefits and has the merit to be considered as an efficient alternative for the current bracing systems. (C) 2018 Elsevier Ltd. All rights reserved.
机译:弹性滑动摩擦接头(RSFJ)最近已开发并引入建筑行业。该接头是一种基于摩擦的能量耗散装置,由于其特殊的构造,可以在一个包装中提供能量吸收和自定心性能。当设计人员考虑避免损坏的设计理念时,此设备最适用。该设备的应用之一是RSFJ支架。在该支撑系统中,所需的抗震性能由RSFJ提供,其余支撑组件旨在保持弹性。本文介绍了RSFJ支撑系统,包括防塌保险丝。这种内置保险丝的工作方式是,当施加的力超过设计载荷时,辅助保险丝被激活,RSFJ支撑仍可提供高达目标变形两倍的自定心功能,轴向力最大为125目标设计力的倍数。通过在组件级别的实验测试来研究此保险丝的性能,并给出结果。此外,建立了带有RSFJ支撑的五层钢结构的数值模型,并对其进行了非线性静态推覆和非线性动态时程仿真,以研究所提出系统的抗震性能。这项研究的结果表明,RSFJ支撑系统可以提供大量的性能优势,并且具有被认为是当前支撑系统的有效替代方案的优点。 (C)2018 Elsevier Ltd.保留所有权利。

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