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首页> 外文期刊>Journal of structural engineering >Behavior of Reinforced Concrete Column-Steel Beam Roof Level T-Connections under Displacement Reversals
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Behavior of Reinforced Concrete Column-Steel Beam Roof Level T-Connections under Displacement Reversals

机译:位移反向下钢筋混凝土柱-钢梁屋面T形连接的性能

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摘要

Results from an experimental study on the seismic response of two hybrid RC column-to-steel (S) beam (RCS) roof level T-connection subassemblies are presented. The primary variables investigated were: (1) anchorage requirements in column longitudinal bars; and (2) confinement requirements in RCS roof level T-connections. In the first subassembly the column bars were anchored by providing a development length of 12 bar diameters and an end mechanical anchor with twice the diameter of the bar, while connection confinement was provided by steel band plates wrapping around the column regions just above and below the steel beam. This specimen exhibited a stable response up to 4.0 percent drift, the displacement at which a column bar anchorage failure occurred, which led to excessive bar slip through the connection with the associated decay in stiffness and strength. In the second specimen the development length for the column longitudinal bars was increased to 20 bar diameters and a larger bearing area for the mechanical anchors was provided through steel channel sections running transversely above the top flange of the steel beam. The behavior of the second specimen was characterized by large column inelastic rotations, good stiffness retention and energy dissipation capacity, and limited joint damage. Thus, experimental results indicate that properly designed RCS roof level T-connections exhibit a stable behavior under large inelastic deformation reversals, such as those induced by strong earthquakes.
机译:给出了两个RC钢筋混凝土柱到钢(RCS)屋顶T型连接子组合件的地震响应的实验研究结果。研究的主要变量是:(1)柱纵筋的锚固要求; (2)RCS屋顶T型连接的限制要求。在第一个子组件中,通过提供长度为12 bar的展开长度和端部机械锚(其直径为bar的两倍)来锚固柱杆,同时通过围绕柱区正上方和下方缠绕的钢带板提供连接限制。钢梁。该样品在高达4.0%的漂移时表现出稳定的响应,发生位移时会发生柱筋锚固破坏,从而导致柱杆过大的滑移,并伴有刚度和强度的下降。在第二个试样中,圆柱纵筋的展开长度增加到20 bar的直径,并且通过横向穿过钢梁顶部凸缘的钢质通道段为机械锚提供了更大的支承面积。第二个样品的行为特征是大的柱子非弹性旋转,良好的刚度保持能力和能量耗散能力以及有限的接头损坏。因此,实验结果表明,经过适当设计的RCS屋顶T型连接在大的非弹性变形反转(例如由强地震引起的反转)下表现出稳定的行为。

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