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Seismic design and performance of dual structures with BRBs and semi-rigid connections

机译:BRBS和半刚性连接双结构的地震设计和性能

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In the past, the use of Buckling Restrained Braces (BRBs) in buildings with braced structure has been proposed to overcome the drawback of steel Concentrically Braced Frames (CBF) caused by the low dissipative cyclic behaviour of conventional buckling braces. The structure is conceived so that a few braced frames resist the entire seismic force and all the other frames sustain gravity loads only. According to the design practice adopted in European countries, all the beam-to-column connections are usually perfectly pinned. The use of these connections leads to low-redundant systems, which tend to form soft storey collapse mechanisms. The concentration of drift demand predudes the full exploitation of the deformation capacity of all the BRBs of the frame and partially reduces the benefit that may derive from these devices. A more effective structural system may be obtained by coupling frames with BRB5 with frames with semi-rigid connections. In fact, the frame with semi-rigid connections provides a residual lateral stiffness after yielding of BRBs and thus promotes a more uniform distribution of the drift demand along the height of the building. This paper investigates the seismic performance of dual steel systems with BRBs and semi-rigid connections. A set of frames is designed considering several values of the behaviour factor and the response of the obtained frames is determined by nonlinear dynamic analysis. Then, the behaviour factor that allows the frames to meet the performance objectives of Eurocode 8 is determined. The seismic performance of the frames is assessed in terms of ductility demand-to-capacity ratio of dissipative members, in terms of strength demand-to-capacity ratio of non-dissipative members, and residual drifts. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在过去,已经提出了在具有支撑结构的建筑物中使用屈曲束缚的括号(BRB)以克服由常规屈曲牙包的低耗散环状行为引起的钢同心支撑框架(CBF)的缺点。构思结构使得少数支撑框架抵抗整个地震力,并且所有其他帧的所有其他框架只能维持重力载荷。根据欧洲国家采用的设计实践,所有光束到柱连接通常都是完全固定的。这些连接的使用导致低冗余系统,这倾向于形成软层面的折叠机制。漂移需求的浓度预先利用框架的所有BRB的变形容量,并部分地降低了可能导出这些装置的益处。可以通过用具有半刚性连接的帧的帧耦合框架来获得更有效的结构系统。事实上,具有半刚性连接的框架在BRB的产生后提供残余横向刚度,从而促进沿着建筑物的高度的漂移需求的更均匀分布。本文研究了双钢系统与BRB和半刚性连接的地震性能。考虑一组帧,考虑到几个行为因子的值,并且通过非线性动态分析确定所获得的帧的响应。然后,确定允许帧以满足Eurocode 8的性能目标的行为因素。根据不耗散成员的强度需求比率和残留漂移,在耗散成员的延展性需求比率方面评估框架的地震性能。 (c)2019 Elsevier Ltd.保留所有权利。

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