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Seismic Design And Behavior Of Post-tensioned Steel Connections Including Effects Of A Composite Slab

机译:后张钢连接的抗震设计和性能,包括复合板的影响

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摘要

Three series of six full-scale, cyclic tests on post-tensioned (PT) beam-to-column connections were conducted to evaluate the cyclic performance. Each specimen represented an interior connection with steel beams PT to a column; one specimen also incorporated a composite slab. Reduced Flange Plates (RFPs) were added at the beam-to-column interface for energy dissipation, and flange reinforcing plates were provided outside the beam flanges to minimize yielding upon decompression. This paper describes the durability of the proposed connection, the effects of web stiffeners on beam local buckling, and the interaction of a composite slab. The first test series demonstrated that as long as beam yielding could be prevented before an interstory drift of 4%, the PT connection was capable of reaching an interstory drift of 5% or experiencing the AISC seismic loads twice without beam buckling. The second test series showed that beam buckling could be prevented by utilizing web stiffeners instead of increasing the length of the flange reinforcing plate. The third test series included a matched pair of specimens, one bare steel beam and one including a composite slab. Results that emphasize the influence of the composite slab on re-centering behavior and specific comments on the slab response were presented. The presence of a composite slab corresponded to higher-achieved moments due to the tensile capacities of the metal deck flutes, wire mesh, and longitudinal reinforcement, which were placed parallel to the PT beam. However, the re-centering behavior could be maintained after fractures of the wire mesh in the proposed slab details. Estimates of beam moments considering the presence of a composite slab were presented based on the cyclic test results.
机译:对后张紧(PT)的梁到柱连接进行了三个系列的六个全面循环测试,以评估循环性能。每个样本代表一个内部连接,其中钢梁PT连接到圆柱上。一个标本还加入了复合板。在梁到柱的界面处添加了减少的法兰板(RFP)以消散能量,并且在梁的法兰外侧提供了法兰加强板,以最大程度地减少减压时的屈服。本文描述了所提出的连接的耐久性,腹板加劲肋对梁局部屈曲的影响以及复合板的相互作用。第一个测试系列表明,只要能够在4%的层间漂移之前防止梁屈服,PT连接就能达到5%的层间漂移或两次AISC地震载荷而不会发生梁屈曲。第二个测试系列表明,通过使用腹板加强筋而不是增加法兰加强板的长度,可以防止梁屈曲。第三个测试系列包括一对匹配的试样,一个裸钢梁和一个包含复合板的试样。提出了强调复合板对重新定心行为的影响的结果以及对板响应的特定评论。复合板的存在对应于更高的弯矩,这是由于金属甲板凹槽,金属丝网和纵向钢筋的抗拉能力,它们平行于PT梁放置。但是,在建议的平板细节中,在丝网破裂后仍可保持重新定心行为。基于循环试验结果,提出了考虑存在复合板的梁弯矩的估算值。

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