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Seismic design of reinforced concrete beam-column joints with floor slab

机译:楼板钢筋混凝土梁柱节点的抗震设计。

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摘要

Beam-column joints are addressed in the context of current design procedures and performance criteria for reinforced concrete ductile frames subjected to large earthquake motions. Attention is drawn to the significant differences between the pertinent requirements of concrete design codes of New Zealand and the United States for such joints. The difference between codes stimulated researchers and structural engineers of the United States, New Zealand, Japan and China to undertake an international collaborative research project. The major investigators of the project selected issues and set guidelines for co-ordinated testing of joint specimens designed according to the codes of the countries. The tests conducted at the University of Canterbury, New Zealand, are reported. Three full-scale beam-column-slab joint assemblies were designed according to existing code requirements of NZS 3101:1982, representing an interior joint of a one-way frame, an interior joint of a two-way frame, and an exterior joint of a two-way frame. Quasistatic cyclic loading simulating severe earthquake actions was applied. The overall performance of each test assembly was found to be satisfactory in terms of stiffness, strength and ductility. The joint and column remained essentially undamaged while plastic hinges formed in the beams. The weak beam-strong column behaviour sought in the design, desirable in tall ductile frames designed for earthquake resistance, was therefore achieved. Using the laws of statics and test observations, the action and flow of forces from the slabs, beams and column to the joint cores are explored. The effects of bond performance and the seismic shear resistance of the joints, based on some postulated mechanisms, are examined. Implications of the test results on code specifications are discussed and design recomendations are made.
机译:梁柱节点在现行设计程序和承受大地震运动的钢筋混凝土延性框架的性能标准中得到解决。请注意新西兰和美国对此类接缝的具体设计规范的相关要求之间的重大差异。规范之间的差异刺激了美国,新西兰,日本和中国的研究人员和结构工程师进行国际合作研究项目。该项目的主要研究人员选择了一些问题,并为根据国家法规设计的联合标本的协调测试制定了指南。报告了在新西兰坎特伯雷大学进行的测试。根据NZS 3101:1982的现有规范要求,设计了三个全尺寸的梁柱-平板-节点联合组件,分别表示单向框架的内部接头,双向框架的内部接头和NZS 3101的外部接头。两向框架。应用了模拟严重地震作用的准静态循环荷载。发现每个测试组件的整体性能在刚度,强度和延展性方面都令人满意。当梁中形成塑料铰链时,接头和柱子基本上没有损坏。因此实现了设计中所寻求的弱梁强柱特性,这是为抗震设计的高延性框架所希望的。利用静力学定律和试验观察,研究了从平板,梁和柱到节理岩心的作用力和流动。基于一些假定的机制,研究了粘结性能和接头抗地震剪切力的影响。讨论了测试结果对代码规范的影响,并对设计提出了建议。

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  • 作者

    Cheung (Patrick) Pak Chiu;

  • 作者单位
  • 年度 1991
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  • 原文格式 PDF
  • 正文语种 en
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