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首页> 外文期刊>Journal of Constructional Steel Research >Development, testing and performance evaluation of steel beam-through framed connections with curved knee braces for improving seismic performance
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Development, testing and performance evaluation of steel beam-through framed connections with curved knee braces for improving seismic performance

机译:钢梁的开发,测试和性能评估与弯曲膝关节围绕改善地震性能的框架连接

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An innovative beam-through framed connection equipped with curved knee braces is presented in this article. Curved knee braces with pinned connections are employed in semi-rigid beam-to-column joints. The proposed connection is expected to exhibit great deformability and energy dissipating capacity. The working mechanism and the theoretical behavior of the connection are firstly introduced, followed by an experimental study on three full-scale specimens under quasi-static cyclic tests. The test specimens exhibited stable behavior and great ductility. Damages were mainly concentrated on the knee braces within 0.02 rad drift ratio. The failure appeared when loading amplitude was above 0.07 rad drift ratio. The proposed connection is then introduced into beam-through steel frames (BTFs) which use strip braces as lateral force resisting system. To evaluate the contribution from knee braces, nonlinear response history analyses were performed on four demonstration BTFs. Based on the results of analyses, it is found that traditional BTF would exhibit high mode effect due to compressive buckling of strip braces, the inter-story drift is nonuniform along building height. Employing knee braces on traditional BTF stabilizes hysteretic behaviors and improves post-yielding strength for the system, global response of the system is reduced obviously and soft-story mechanism is mitigated. Moreover, results also indicate that satisfying peak transient inter-story drift and deformation uniformity can be achieved when strength demand from knee braces is adopted as 25% of total design inter-story strength demand. (c) 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了配备有弯曲膝关节括号的创新的光束框架。具有固定连接的弯曲的膝盖括号在半刚性光束到柱接头中使用。建议的连接预计会表现出具有很大的可变形性和能量耗散能力。首先介绍了连接的工作机制和理论行为,其次是对准静态循环试验下的三种全尺寸标本进行实验研究。试样表现出稳定的行为和巨大的延展性。损坏主要集中在0.02 RAT漂移比以内的膝盖支撑。装载幅度高于0.07 RAT漂移比时出现故障。然后将所提出的连接引入光束上的钢框架(BTF),该钢框架(BTF)使用条带支架作为横向力抵抗系统。为了评估膝关节括号的贡献,在四个演示BTFS上进行非线性响应历史分析。基于分析结果,发现传统的BTF由于剥离胶带压缩屈曲而表现出高模式效应,故事间漂移沿建筑高度不均匀。在传统的BTF上采用膝盖支架稳定滞后行为,提高系统后产量,系统的全球响应明显减少,减轻了软体故事机制。此外,结果还表明,当膝关节的强度需求被采用为总设计讲故事型强度需求的25%时,可以实现满足峰值瞬态界面漂移和变形均匀性。 (c)2021 elestvier有限公司保留所有权利。

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