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Interior beam column joints with nominal joint shear reinforcement versus unsymmetrical chamfers

机译:内梁柱接头,标称接头剪切钢筋与非对称倒角

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摘要

As critical members in moment resisting frames, beam-column-joint (BCJ) is subjected to high shear force during earthquake. In this study, a strengthening method has been proposed by installing unsymmetrical chamfers at the soffit of beam to strengthen BCJ without seismicity consideration. Tests were conducted on four 2/3-scale BCJs under cyclic loading with constant axial force, including two strengthened specimens with and without reinforcement in chamfer, one specimen provided with nominal joint shear reinforcement, and one control specimen. To investigate the joint shear capacity, BCJs are designed to fail within the joint core by providing higher capacities to beams and columns. Performances of specimens are investigated with respect to hysteresis behavior, joint shear force, shear distortion of joint region, energy dissipation, stiffness degradation and strains of chamfers. Performance of strengthened specimens is compatible to the specimen provided with nominal joint shear reinforcement. Unsymmetrical chamfer can effectively increase the joint shear capacity to prevent joint shear failure. A load transfer mechanism for BCJ strengthened by chamfers is proposed. As chamfer provides a strut mechanism under compression, compatible performance can still be achieved by chamfers without U-bars.
机译:作为抵抗框架时的关键构件,梁柱关节(BCJ)在地震期间受到高剪切力。在该研究中,通过在没有地震性考虑的情况下在光束的拱道上安装不对称的倒角来提出强化方法来加强BCJ。在具有恒定轴向力的循环载荷下在四个2/3级BCJ上进行测试,包括两个强化标本,其中具有倒角,一个标称接头剪切钢筋和一个对照样品的一个试样。为了研究关节剪切容量,BCJS设计为通过为梁和柱提供更高的容量而在联合核心内失效。研究了标本的性能,相对于滞后行为,关节剪切力,接合区域的剪切畸变,能量耗散,刚度降解和倒角菌株。增强标本的性能与具有标称接头剪切钢筋的标本相容。不对称倒角可以有效地增加关节剪切能力以防止关节剪切失效。提出了通过倒角强化BCJ的负载转移机构。由于倒角提供压缩的支柱机制,仍然可以通过没有U形杆的倒角来实现兼容性能。

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