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Debonding failure along a softening FRP-to-concrete interface between two adjacent cracks in concrete members

机译:沿着混凝土构件中两个相邻裂缝之间的软化的FRP到混凝土界面的脱胶失败

摘要

A concrete beam can be strengthened by bonding a fibre reinforced polymer (FRP) plate to the tension face, and a common failure mode for such beams involves the debonding of the FRP plate that initiates at a major flexural crack, which is widely referred to as intermediate crack (IC) debonding. To understand IC and other debonding failures, the bond behaviour between FRP and concrete has been studied extensively using simple pull-off tests, in which a plate is bonded to a concrete prism and is subject to tension. However, the behaviour of the FRP-to-concrete interface in a beam can be significantly different from that captured in a pull-off test as, in a beam, whether debonding along the FRP-to-concrete interface occurs at a major flexural crack or not depends on the conditions at this crack as well as at the adjacent crack on the path of the debonding propagation. This paper is therefore concerned with the debonding process of an FRP-to-concrete bonded joint where the FRP plate is subject to tension at both ends, which closely approximates the IC debonding process in a flexurally strengthened RC member. The same problem has been the topic of a previous study by the authors, where a bilinear local bond-slip model was employed for the FRP-to-concrete interface. However, that solution is rather complex and difficult to apply in practice. The aim of this study is to produce a simplified solution by employing the simple linearly softening local bond-slip law for the interface. Results from this simplified analytical solution are compared with those from the previous solution, showing little loss of accuracy in predicting the load-displacement response and the ultimate load. The most significant outcome of the new solution is a simple expression for the ultimate load of the bonded joint which offers the potential for direct practical application. While the emphasis of the paper is on FRP-to-concrete joints, the solution and methodology are applicable to similar joints between other materials such as FRP-to-steel or steel-to-concrete bonded joints.
机译:可以通过将纤维增强聚合物(FRP)板粘结到张紧面上来增强混凝土梁,这种梁的常见破坏方式包括FRP板的剥离,该剥离在大的挠曲裂纹处开始,这被广泛称为中间裂纹(IC)脱胶。为了了解IC和其他脱胶失败的情况,已使用简单的拉拔试验对FRP与混凝土之间的粘结性能进行了广泛的研究,在该试验中,将一块板粘结到混凝土棱镜上并承受拉力。但是,梁中FRP到混凝土界面的行为可能与拉拔测试中捕获的行为大不相同,因为在梁中,沿FRP到混凝土界面的剥离是否发生在主要挠曲裂缝处是否取决于该裂纹以及脱粘扩展路径上相邻裂纹的条件。因此,本文关注的是FRP到混凝土粘结接头的剥离过程,其中FRP板的两端都受到拉力,这与弯曲加固的RC构件中的IC剥离过程非常接近。作者先前的研究主题是相同的问题,在该研究中,FRP到混凝土的界面采用了双线性局部结合滑移模型。但是,该解决方案相当复杂,难以在实践中应用。这项研究的目的是通过对界面采用简单的线性软化局部结合滑移定律来产生简化的解决方案。将此简化分析解决方案的结果与先前解决方案的结果进行了比较,显示出在预测载荷-位移响应和最终载荷时的精度损失很小。新解决方案最显着的成果是简单表达了粘结接头的极限载荷,为直接实际应用提供了潜力。尽管本文的重点是FRP到混凝土的连接,但该解决方案和方法适用于其他材料之间的类似连接,例如FRP到钢的连接或钢到混凝土的粘结。

著录项

  • 作者

    Chen JF; Yuan H; Teng JG;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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