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Prediction of the nonlinear pull-out response of FRP ground anchors using an analytical transfer matrix method

机译:解析传递矩阵法预测FRP地锚的非线性拔出响应

摘要

Fiber-reinforced polymer (FRP) rods have been increasingly used in grouted ground anchors due to their high strength-to-weight ratio, excellent corrosion resistance, and convenience in incorporating the fiber sensing technology. To establish their pull-out capacity, FRP rods are usually embedded within a grouted steel tube and then subjected to pull-out in the laboratory. The aim of this paper is to develop a numerical method for predicting the nonlinear pull-out response of FRP rods embedded in steel tubes filled with cement grout. In the method, the cement grout is assumed to be subject to simple shear, the local interfacial bond stress-slip model of the bar-to-grout interface is represented by a piece-wise curve comprising elastic, softening, and frictional stages, and the unloading effect is also taken into account. A set of two second-order ordinary differential equations are derived in terms of the displacements of the FRP rod and steel tube and solved analytically to formulate the element transfer matrix. When the thickness of the steel tube approaches infinity, this method can be applied to the problem of FRP rods embedded in rock. Based on the developed numerical method, the interfacial bond properties and snapback phenomenon are analyzed. After the method is validated by comparisons with four sets of experimental data, the effects of the radius and length of FRP rods, the local peak bond stress and the residual frictional strength on the maximum pull-out load are evaluated in a quantitative manner.
机译:纤维增强聚合物(FRP)杆因其高的重量重量比,出色的耐腐蚀性以及结合纤维传感技术的便利性而越来越多地用于灌浆的地锚中。为了确定其拉拔能力,通常将FRP杆嵌入注浆钢管中,然后在实验室中进行拉拔。本文的目的是开发一种数值方法来预测埋入水泥浆的钢管中的FRP杆的非线性拔出响应。在该方法中,假定水泥浆受到简单的剪切作用,钢筋到浆液界面的局部界面粘结应力-滑动模型由包含弹性,软化和摩擦阶段的分段曲线表示,并且还考虑了卸载效果。根据玻璃钢杆和钢管的位移推导了一组两个二阶常微分方程,并进行了解析求解,从而得出了元素传递矩阵。当钢管的厚度接近无穷大时,该方法可以应用于埋在岩石中的FRP杆的问题。基于改进的数值方法,分析了界面键的性质和回弹现象。通过与四组实验数据的比较验证了该方法的有效性后,定量评估了FRP杆的半径和长度,局部峰值粘结应力和残余摩擦强度对最大拉拔载荷的影响。

著录项

  • 作者

    Zheng JJ; Dai JG;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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