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Seismic behavior and strength capacity of steel coupling beam-to-SRC wall joints

机译:钢-梁-SRC墙体连接的抗震性能和强度能力

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A hybrid coupled wall system, where steel coupling beams couple steel reinforced concrete (SRC) walls in series, has been recognized as an alternative to reinforced concrete (RC) coupled wall systems for enhanced seismic performance of high-rise buildings. A key issue of this system is seismic design of steel coupling beam-to-SRC wall joints. This paper presents a series of full-scale tests to investigate the cyclic behavior and strength capacity of the steel coupling beam-to-SRC wall joints, where a steel beam was rigidly connected to an encased steel column in wall boundary using a fully welded connection detail. The steel beam-to-SRC wall joints failed in panel shear mode, characterized by yielding of the steel web panel and joint transverse reinforcement, and crisscrossed-diagonal cracking and crushing of joint panel concrete. A design model for calculating the nominal strength of the steel beam-to-SRC wall joint is presented. The accuracy of the design model was verified against the collected test data and additional finite element (FE) analysis. The experimental tests and FE analysis also identified that severe vertical cracks might develop along the inner side of wall boundary element, due to horizontally tensile forces induced by the steel beam flange. Increased amount of horizontally distributed rebar is recommended to be assigned in around the join region, in order to control such unwanted damage. In addition, the test results of one specimen demonstrated that properly designed beam-to-wall joint remained slightly damaged when the steel coupling beam fully developed its plastic rotation.
机译:一种混合耦合墙系统,其中钢耦合梁串联耦合钢筋混凝土(SRC)墙,已被视为增强高层建筑抗震性能的钢筋混凝土(RC)耦合墙系统的替代方案。该系统的关键问题是钢制梁到SRC墙面连接的抗震设计。本文提出了一系列全面测试,以研究钢耦合梁到SRC墙接头的循环行为和强度能力,其中钢梁通过完全焊接连接牢固地连接到墙边界中的封闭钢柱上详情。钢梁到SRC的墙缝在面板剪切模式下失效,其特征在于钢板腹板和缝的横向钢筋的屈服,以及缝面板混凝土的斜交斜向裂缝和破碎。提出了一种计算钢梁到SRC墙缝标称强度的设计模型。针对收集的测试数据和其他有限元(FE)分析,验证了设计模型的准确性。实验测试和有限元分析还确定,由于钢梁翼缘引起的水平拉力,壁边界单元的内侧可能会出现严重的垂直裂纹。建议在连接区域周围分配更多水平分布的钢筋,以控制此类有害损坏。此外,一个样品的测试结果表明,当钢制连接梁完全发挥其塑性旋转能力时,设计合理的梁对墙接头仍会受到轻微损坏。

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