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Seismic performance of reinforced concrete interior beam-column joints with novel reinforcement detail

机译:具有新型加固细节的钢筋混凝土内部梁柱接头的地震性能

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摘要

Horizontal stirrups are normally required in reinforced concrete (RC) beam-column joints (BCJs) for resisting shear forces in seismic design. For RC moment-resisting frames subjected to a high lateral load, a large number of stirrups are needed in joint cores. This may cause reinforcement congestion, leading to construction difficulty and insufficient concrete compaction, which can result in poor seismic performance. In this study, a novel reinforcement detail in the form of unbonded diagonal bars mechanically anchored at beam ends is proposed for RC interior BCJs. The detail alleviates the reinforcement congestion through partially replacing horizontal stirrups, and improves the seismic performance of BCJs by plastic hinge relocation and input shear force reduction mechanisms. Four 2/3-scale RC interior BCJ specimens were prepared and tested under quasi-static cyclic load, including one specimen designed with the current code and three specimens adopting the proposed reinforcement detail. Test results show that the proposed reinforcement detail is able to relocate the plastic hinges away from beam-joint interfaces as well as improve the loading capacity, energy dissipation capacity, stiffness, and bonding condition of beam reinforcements within the cores of BCJs. The combined use of stirrups and the proposed reinforcement detail significantly enhances the cracking resistance and reduces joint distortion, while additional amount of stirrups results in a marginal improvement. Moreover, an analytical model considering plastic hinge relocation and input joint shear force reduction is proposed for BCJs with the novel reinforcement detail. The model can adequately predict the failure mode and loading capacity of BCJ specimens.
机译:钢筋混凝土(RC)梁柱接头(BCJ)通常需要水平箍筋,用于抵抗地震设计中的剪切力。对于经受高侧载荷的RC力矩抵抗框架,联合芯中需要大量的搅拌器。这可能导致强化拥堵,导致施工难度和混凝土压实不足,这可能导致地震性能不佳。在本研究中,为RC内部BCJS提出了一种机械地固定在梁端部的未粘合对角线条形式的新型增强细节。该细节通过部分更换水平刺激来减轻钢筋充血,并通过塑料铰链重定位改善BCJ的地震性能和输入剪切力减少机构。在准静态循环负载下制备并测试了四种2/3尺寸的RC内部BCJ样本,包括一个设计的一个标本,采用当前代码和采用所提出的增强细节的三种样品。测试结果表明,该拟议的增强细节能够将塑料铰链搬出远离光束接头,以及提高BCJ芯内梁增强率的负载能力,能量耗散能力,刚度和粘合条件。搅拌器的结合使用和所提出的增强细节显着提高了裂化阻力并降低了关节变形,而额外的搅拌量导致边际改善。此外,提出了考虑塑料铰链搬迁和输入关节剪切力减小的分析模型,用于具有新型加强细节的BCJ。该模型可以充分预测BCJ样本的故障模式和负载能力。

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