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Numerical Study of Bond and Development of Column Longitudinal Reinforcement Extended into Oversized Pile Shafts

机译:扩孔超大桩轴纵向加固的粘结与发展数值研究

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摘要

This paper presents a numerical investigation to examine the bond-slip behavior of column longitudinal reinforcing bars embedded in oversized pile shafts and to determine the minimum embedment length required for the column bars to prevent anchorage failure. Three-dimensional nonlinear finite-element models of column-pile assemblies incorporating the bond-slip behavior of the longitudinal reinforcing bars have been developed for the numerical analyses. The capability of the models in capturing the response of column bars along their embedment length has been verified with experimental results from four full-scale column-pile assemblies tested under cyclic lateral loads. The study has shown that the bond-stress distribution along the bar anchorage length is highly nonuniform and that the embedment length specified for the column reinforcement in current design standards is very conservative. A new design formula that significantly reduces the embedment length has been evaluated. The numerical results have indicated that the new embedment-length formula provides a good margin of safety against the pull-out failure of the column bars. The results have also shown that the use of an engineered steel casing to provide lateral confinement for the pile is an effective means to enhance the bond strength and reduce the slip of the column longitudinal bars in the anchorage region.
机译:本文提出了一个数值研究,以检查嵌入在超大桩身中的圆柱纵向钢筋的粘结滑移行为,并确定圆柱钢筋防止锚固破坏所需的最小嵌入长度。为了进行数值分析,已经开发了包含纵向钢筋的粘结滑移行为的圆柱桩组件的三维非线性有限元模型。通过在周期性侧向载荷下测试的四个全尺寸柱桩组件的实验结果,验证了模型捕获柱筋沿其嵌入长度的响应的能力。研究表明,沿钢筋锚固长度的粘结应力分布非常不均匀,并且在当前设计标准中为钢筋柱指定的嵌入长度非常保守。已经评估了一种新的设计公式,该公式可显着减少嵌入长度。数值结果表明,新的嵌入长度公式为防止柱杆拉出破坏提供了良好的安全裕度。结果还表明,使用工程钢外壳为桩提供侧向约束是提高粘结强度并减少锚固区域中柱纵筋滑移的有效手段。

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  • 来源
    《Journal of structural engineering》 |2018年第5期|04018025.1-04018025.13|共13页
  • 作者单位

    Univ Texas Austin, Dept Civil Architectural & Environm Engn, Austin, TX 78712 USA;

    Univ Calif San Diego, Dept Struct Engn, La Jolla, CA 92161 USA;

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  • 正文语种 eng
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