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Numerical and analytical investigation of internal slab-column connections subject to cyclic loading

机译:循环荷载作用下内部板柱连接的数值分析研究

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摘要

Properly designed flat slab to column connections can perform satisfactorily under seismic loading. Satisfactory performance is dependent on slab column connections being able to withstand the imposed drift while continuing to resist the imposed gravity loads. Particularly at risk are pre 1970's flat slab to column connections without integrity reinforcement passing through the column. Current design provisions for punching shear under seismic loading are largely empirical and based on laboratory tests of thin slabs not representative of practice. This paper uses nonlinear finite element analysis (NLFEA) with ATENA and the Critical Shear Crack Theory (CSCT) to investigate the behaviour of internal slab-column connections without shear reinforcement subject to seismic loading. NLFEA is used to investigate cyclic degradation which reduces connection stiffness, unbalanced moment capacity, and ductility. As observed experimentally, cyclic degradation in the NLFEA is shown to be associated with accumulation of plastic strain in the flexural reinforcement bars which hinders concrete crack closure. Although the NLFEA produces reasonable strength and ductility predictions, it is unable to replicate the pinching effect. It is also too complex and time consuming to serve as a practical design tool. Therefore, a simple analytical design method is proposed which is based on the CSCT. The strength and limiting drift predictions of the proposed method are shown to mainly depend on slab depth (size effect) and flexural reinforcement ratio which is not reflected in available empirically-based models which appear to overestimate the drift capacity of slab-column connections with dimensions representative of practice.
机译:正确设计的平板到柱连接可以在地震荷载下令人满意地工作。令人满意的性能取决于平板柱连接能够承受施加的漂移,同时继续抵抗施加的重力载荷。特别危险的是1970年前的平板到柱的连接,而没有通过柱的整体加固。当前在地震荷载下冲剪的设计规定主要是经验性的,并且基于薄板的实验室测试,并不代表实践。本文采用带ATENA的非线性有限元分析(NLFEA)和临界剪切裂纹理论(CSCT)来研究在地震荷载作用下没有抗剪加固的内部板-柱连接的性能。 NLFEA用于研究周期性退化,这种退化会降低连接刚度,不平衡的力矩能力和延展性。如实验观察到的那样,NLFEA中的循环降解被证明与塑性应变在弯曲钢筋中的积累有关,这阻碍了混凝土裂缝的闭合。尽管NLFEA产生了合理的强度和延展性预测,但它无法复制捏紧效果。作为实用的设计工具,它也太复杂且耗时。因此,提出了一种基于CSCT的简单分析设计方法。结果表明,所提出方法的强度和极限漂移预测主要取决于板的深度(尺寸效应)和抗弯配筋率,这在现有的基于经验的模型中并没有体现出来,这些模型似乎高估了板-柱连接尺寸的位移能力。实践的代表。

著录项

  • 来源
    《Engineering Structures》 |2019年第1期|535-554|共20页
  • 作者单位

    Imperial Coll London, Dept Civil & Environm Engn, London, England;

    Imperial Coll London, Dept Civil & Environm Engn, London, England;

    Imperial Coll London, Dept Civil & Environm Engn, London, England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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