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Failure analysis of column-slab connections with stud shear reinforcement

机译:柱-剪力柱连接的破坏分析

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摘要

The design of a flat plate structure is generally governed either by serviceability limits on deflection or punching shear strength of the column?slab connections. To increase the strength of a column?slab connection, a new type of shear reinforcement, referred to as shear stud, is gaining popularity in practice. In this paper, a nonlinear layered finite element method (LFEM) is used to investigate the effectiveness of the shear studs in increasing the punching shear strength of edge and corner column?slab connections. In total, nine large-scale reinforced concrete slabs of a flat plate floor in the vicinity of edge and corner columns, tested previously in the laboratory, are analysed. All the slabs contained stud shear reinforcement (SSR) except a control slab where no SSR was provided. The test variables were the column size and the ratio of stud spacing to slab thickness. The punching shear strengths, load?deflection responses, and crack patterns predicted by the LFEM are compared with the experimental results. The numerical investigation confirms the accuracy and effectiveness of the LFEM in predicting the strength of column?slab connections with SSR.Key words: column?slab connection, concrete flat plate, punching shear, stud shear reinforcement, finite element analysis.
机译:平板结构的设计通常由对挠性或柱-平板连接的冲切剪切强度的可使用性限制进行控制。为了提高柱-平板连接的强度,一种新型的剪力增强材料(称为剪力钉)在实践中越来越受欢迎。本文采用非线性分层有限元方法(LFEM)来研究抗剪栓钉在提高边角柱-平板连接的冲切抗剪强度方面的有效性。总共,分析了先前在实验室中测试过的,在边角柱和角柱附近的平板地板的九个大型钢筋混凝土板。除未提供SSR的对照板外,所有这些板均包含柱形抗剪钢筋(SSR)。测试变量是柱尺寸和柱间距与板厚的比率。将LFEM预测的冲剪强度,载荷-挠度响应和裂纹模式与实验结果进行了比较。数值研究证实了LFEM在预测采用SSR的柱-板连接强度方面的准确性和有效性。关键词:柱-板连接,混凝土平板,冲剪,柱剪增强,有限元分析。

著录项

  • 作者

    Guan Hong; Loo Yew-Chaye;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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