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首页> 外文期刊>Journal of Constructional Steel Research >Behavior of a steel coupled beam moment frame based on nonlinear analyses
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Behavior of a steel coupled beam moment frame based on nonlinear analyses

机译:基于非线性分析的钢耦合梁弯矩框架性能

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A steel coupled beam moment frame (CBMF) is an innovative seismic resisting moment resisting frame that is composed of coupled beams and steel columns. A coupled beam features a pair of steel beams, post-tensioning elements, and energy dissipation devices. Coupled beams can be fabricated in shop and pin-connected to columns on site, facilitating the field construction. Energy dissipation is provided by a special energy dissipation device, not by damage to the main structural members or to the energy dissipation device itself. Rotations at beam-column joints are the result of a relative slide mechanism of the coupled beams, not the result of beam plastic hinges. During unloading, the force in the PT elements eliminates coupled beam relative slide as well as rotations at beam-column joints, offering the potential of minimal residual rotations to coupled beam-column connections. This paper presents conceptual details, conceptual behavior, and design considerations for CBMFs. For behavior study, a prototype building using CBMFs as the lateral resisting frames was designed. A nonlinear analysis model for the prototype building was created. Static pushover and cyclic push analyses were conducted to assess the concepts. Dynamic time history analyses using a 44-ground motion record set were performed to study the post-earthquake residual story drift and residual connection rotation response of the prototype CBMF building. Analysis results showed that the global behavior and connection response of the prototype CBMF supported the conceptual behavior and design considerations, and that post-earthquake story drifts and connection rotations of the prototype CBMF building are ignorably small.
机译:钢制耦合梁矩框架(CBMF)是一种创新的抗震抗矩框架,由耦合梁和钢柱组成。耦合梁具有一对钢梁,后张紧元件和能量消散装置。耦合梁可以在工厂中制造,并在现场用销钉连接到立柱,从而方便了现场施工。能量消散是由特殊的能量消散装置提供的,而不是对主要结构部件或能量消散装置本身的损坏。梁柱节点处的旋转是耦合梁相对滑动机构的结果,而不是梁塑料铰链的结果。在卸载过程中,PT元件中的力消除了耦合梁的相对滑动以及梁柱接头处的旋转,从而为耦合梁柱连接提供了最小残留旋转的可能性。本文介绍了CBMF的概念细节,概念行为和设计注意事项。为了进行行为研究,设计了使用CBMF作为横向抵抗框架的原型建筑。建立了原型建筑物的非线性分析模型。进行了静态推覆和循环推覆分析以评估概念。使用44个地面运动记录集进行了动态时程分析,以研究原型CBMF建筑物的震后残余物层漂移和残余连接旋转响应。分析结果表明,原型CBMF的整体行为和连接响应支持了概念上的行为和设计考虑因素,并且原型CBMF建筑物的震后故事漂移和连接旋转可忽略不计。

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