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Performance Evaluation of Exterior Beam–Column Joint with Core Reinforcement Technique Subjected to Reverse Cyclic Loading

机译:逆向荷载作用下采用核心加固技术的梁柱外节点性能评估

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摘要

The present work aims to study the performance of exterior beam-column joint with core reinforcement technique subjected to reverse cyclic loading. In this experimental study, three sets of one-third scaled exterior beam-column joint specimens using M30 grade concrete were cast and tested. The first set of specimens were detailed as ordinary moment resisting frame (IS:456 and SP:34) and designated as joint BCJ1. The second sets of specimens were detailed as special moment resisting frame (IS:13920) and designated as joint BCJ2. In the third set, the reinforcement detailing followed in joint BCJ1 was integrated with a new type of reinforcement (called "core reinforcement") proposed in this study and designated as joint BCJ3. Based on the experimental result, the joint BCJ3 gave the better performance considering the strength in terms of load-carrying capacity, energy dissipation capacity, stiffness and ductility factor. The results of reverse cyclic loading tests performed in the exterior beam-column joint models indicate that the additional core reinforcement in the beam-column joint region provide adequate ductility. The stiffness of the joint with additional core reinforcement in the beam-column joint region did not undergo much reduction when compared to other types of joints. In addition, the usage of core reinforcement in the joint region can reduce its installation and difficulties in placing and compacting the concrete. This combination of core reinforcement technique in the beam-column joint region may contribute to reduction in destruction due to earthquakes.
机译:目前的工作旨在通过反向循环荷载研究采用芯增强技术的外部梁柱节点的性能。在本实验研究中,使用M30级混凝土浇铸并测试了三组三分之一比例的外部梁柱节点标本。第一组标本详细描述为普通抗力矩框架(IS:456和SP:34),并指定为联合BCJ1。第二组标本详细描述为特殊抗力矩框架(IS:13920),并指定为联合BCJ2。在第三组中,BCJ1接头中的钢筋细节与本研究中提出的新型钢筋(称为“核心钢筋”)集成在一起,并称为BCJ3接头。根据实验结果,考虑到强度,BCJ3接头在承载能力,消能能力,刚度和延展性方面表现出更好的性能。在外部梁柱接头模型中进行的反向循环荷载测试的结果表明,梁柱接头区域中的附加芯增强提供了足够的延展性。与其他类型的接头相比,在梁柱接头区域中具有附加岩心增强的接头的刚度并未降低太多。另外,在接缝区域中使用芯增强材料可以减少其安装,并减少放置和压实混凝土的难度。梁柱连接区域中核心加固技术的这种结合可有助于减少地震造成的破坏。

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