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Axial Compressive Behaviour of Square Through-Beam Joints between CFST Columns and RC Beams with Multi-Layers of Steel Meshes

机译:多层钢网CFST柱与RC梁之间的矩形直通节点的轴向压缩行为

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摘要

The axial compressive behaviour of an innovative type of square concrete filled steel tube (CFST) column to reinforced concrete (RC) beam joint was experimentally investigated in this paper. The innovative joint was designed such that (i) the steel tubes of the CFST columns were completely interrupted in the joint region, (ii) the longitudinal reinforcements from the RC beams could easily pass through the joint area and (iii) a reinforcement cage, including a series of reinforcement meshes and radial stirrups, was arranged in the joint area to strengthen the mechanical performance of the joint. A two-stage experimental study was conducted to investigate the behaviour of the innovative joint under axial compression loads, where the first stage of the tests included three full-scale innovative joint specimens subjected to axial compression to assess the feasibility of the joint detailing and propose measures to further improve its axial compressive behaviour, and the second stage of the tests involved 14 innovative joint specimens with the improved detailing to study the effect of the geometric size of the joint, concrete strength and volume ratio of the steel meshes on the bearing strengths of the joints. It was generally found from the experiments that (i) the innovative joint is capable of achieving the design criterion of the ‘strong joint-weak member’ with appropriate designs, and (ii) by decreasing the height factor and increasing the volume ratio of the steel meshes, the axial compressive strengths of the joints significantly increased, while the increase of the length factor is advantageous but limited to the resistances of the joint specimens. Because of the lack of existing design methods for the innovative joints, new design expressions were proposed to calculate the axial compression resistances of the innovative joints subjected to bearing loads, with the local compression effect, the confinement effect provided by the multi-layers of steel meshes and the height effect of concrete considered. It was found that the proposed design methods were capable of providing accurate and safe resistance predictions for the innovative joints.
机译:本文通过实验研究了创新型方形钢管混凝土柱对钢筋混凝土梁节点的轴向压缩行为。创新的接头设计如下:(i)CFST柱的钢管在接头区域完全中断,(ii)RC梁的纵向钢筋很容易穿过接头区域,(iii)钢筋笼,包括一系列的钢筋网和径向箍筋,被布置在关节区域以增强关节的机械性能。进行了两阶段的实验研究,以研究创新接头在轴向压缩载荷下的行为,其中测试的第一阶段包括三个承受轴向压缩的全尺寸创新接头样本,以评估接头细化的可行性并提出建议进一步改善其轴向抗压性能的措施,测试的第二阶段涉及14个创新的接头试样,并改进了细节,以研究接头的几何尺寸,混凝土强度和钢网体积比对轴承强度的影响的关节。从实验中通常可以发现,(i)创新的接头能够通过适当的设计达到“坚固的接头-弱构件”的设计标准,并且(ii)通过减小高度因子和增大接头的体积比来实现。在钢网中,接缝的轴向抗压强度显着增加,而长度因数的增加是有利的,但仅限于接缝试样的阻力。由于缺乏创新接头的现有设计方法,因此提出了新的设计表达式来计算承受载荷的创新接头的轴向压缩阻力,并具有局部压缩效应,多层钢提供的约束效应。网格和混凝土的高度影响考虑。发现所提出的设计方法能够为创新的接头提供准确和安全的阻力预测。

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