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Bond and shear mechanics within reinforced concrete beam-column joints incorporating the slotted beam detail

机译:结合了开槽梁细节的钢筋混凝土梁柱节点内的粘结和剪切力学

摘要

The recent earthquakes in Christchurch have made it clear that issues exist with current RC frame design in New Zealand. In particular, beam elongation in RC frame buildings was widespread and resulted in numerous buildings being rendered irreparable. Design solutions to overcome this problem are clearly needed, and the slotted beam is one such solution. This system has a distinct advantage over other damage avoidance design systems in that it can be constructed using current industry techniques and conventional reinforcing steel. As the name suggests, the slotted beam incorporates a vertical slot along part of the beam depth at the beam-column interface. Geometric beam elongation is accommodated via opening and closing of these slots during seismically induced rotations, while the top concrete hinge is heavily reinforced to prevent material inelastic elongation. Past research on slotted beams has shown that the bond demand on the bottom longitudinal reinforcement is increased compared with equivalent monolithic systems. Satisfying this increased bond demand through conventional means may yield impractical and economically less viable column dimensions. The same research also indicated that the joint shear mechanism was different to that observed within monolithic joints and that additional horizontal reinforcement was required as a result.Through a combination of theoretical investigation, forensic analysis, and database study, this research addresses the above issues and develops design guidelines. The use of supplementary vertical joint stirrups was investigated as a means of improving bond performance without the need for non-standard reinforcing steel or other hardware. These design guidelines were then validated experimentally with the testing of two 80% scale beam-column sub-assemblies. The revised provisions for bond within the bottom longitudinal reinforcement were found to be adequate while the top longitudinal reinforcement remained nominally elastic throughout both tests. An alternate mechanism was found to govern joint shear behaviour, removing the need for additional horizontal joint reinforcement. Current NZS3101:2006 joint shear reinforcement provisions were found to be more than adequate given the typically larger column depths required rendering the strut mechanism more effective. The test results were then used to further refine design recommendations for practicing engineers. Finally, conclusions and future research requirements were outlined.
机译:基督城最近发生的地震清楚地表明,新西兰目前的钢筋混凝土框架设计存在问题。特别是,钢筋混凝土框架建筑物中的光束伸长率很普遍,并导致许多建筑物无法修复。显然需要克服该问题的设计解决方案,而开槽光束就是这样一种解决方案。与其他避免损坏的设计系统相比,该系统具有明显的优势,因为它可以使用当前的行业技术和常规的钢筋来构造。顾名思义,开槽光束在光束-柱界面处沿光束深度的一部分合并了一个垂直插槽。在地震感应的旋转过程中,通过打开和关闭这些缝隙来适应几何梁的伸长,同时顶部混凝土铰链得到了大力加固,以防止材料无弹性的伸长。过去对开槽梁的研究表明,与等效的整体式系统相比,底部纵向钢筋上的粘结需求有所增加。通过常规手段满足这种增加的债券需求可能产生不切实际且经济上不可行的柱尺寸。相同的研究还表明,联合剪切机理与整体式联合中观察到的不同,因此需要额外的水平加固。通过理论研究,法医学分析和数据库研究相结合,这项研究解决了上述问题并制定设计指南。已研究使用辅助垂直接头箍筋作为改进粘结性能的方法,而无需使用非标准的钢筋或其他硬件。然后,通过测试两个80%比例的梁柱子组件,对这些设计准则进行了实验验证。发现在两个试验中,底部纵向加强筋内粘结的修订规定是足够的,而顶部纵向加强筋在名义上仍保持名义弹性。发现了一种替代的机制来控制接头的剪切行为,从而无需额外的水平接头加固。考虑到通常需要更大的立柱深度,使支撑机构更加有效,目前的NZS3101:2006联合抗剪加固规定已绰绰有余。然后将测试结果用于进一步完善针对实践工程师的设计建议。最后,总结了结论和未来的研究要求。

著录项

  • 作者

    Byrne Joseph D. R.;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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