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Behaviour and modelling of RC beams strengthening in flexure with near-surface mounted FRP strips.

机译:用近表面安装的FRP条加固钢筋混凝土梁的行为和建模。

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摘要

The near-surface mounted (NSM) FRP method has attracted increasing attention worldwide as one of the most promising techniques for structural strengthening and as an effective alternative to the externally bonded FRP method. This thesis presents a theoretical study carried out by the candidate over the past few years on the behaviour and modelling of RC beams flexurally-strengthened with NSM CFRP strips (i.e. FRP bars of narrow rectangular section). Of the six main chapters of the thesis, three deal with the bond behaviour of CFRP strips near-surface mounted to concrete while the other three are concerned with debonding failure at the ends of CFRP strips.;A 3-D meso-scale finite element (FE) model for NSM CFRP strip-to-concrete bonded joints, in which very small elements (of the order of 1mm) were employed, was developed to study the bond behaviour between NSM CFRP strips and concrete, including the failure process, the local bond stress distribution and the bond-slip relationship. This 3-D meso-scale FE model was verified through comparisons with test results and was then adopted to carry out a parametric study. Based on results from this parametric study, empirical equations for the maximum bond stress and the interfacial fracture energy were formulated, and a bond-slip model was proposed. A bond strength model for NSM CFRP strip-to-concrete bonded joints based on the interfacial fracture energy approach was established. The influence of the bond length of CFRP strips on the bond strength of NSM CFRP strips bonded to concrete were investigated based on the proposed bond-slip model.;Apart from investigations into the bond behaviour of NSM CFRP strips, this thesis also presents investigations into a common debonding failure mode which occurs at the ends of NSM strips and involves the detachment of the FRP reinforcement and the concrete cover (i.e. bar-end cover separation). An analytical solution is first presented for the interfacial interaction forces between the FRP reinforcement and the concrete in RC beams strengthened with NSM FRP. The analytical solution was verified with results from a 3-D linear elastic FE model. Numerical results obtained from the solution show that high interaction forces exist near the cut-off points of NSM CFRP strips, which explains why bar-end debonding failure commonly occurs. Following the study on interfacial interaction forces, a 2-D nonlinear FE model to predict bar-end cover separation failure of RC beams flexurally-strengthened with NSM FRP is presented. Some key factors, which were not addressed or were not simultaneously addressed in existing FE models, were considered in developing this FE model; in particular, the NSM FRP-to-concrete interface was modelled using the bond-slip model presented earlier in the thesis. Based on findings obtained using this 2-D FE model, a simplified FE model for predicting bar-end cover separation failure was next proposed. This simplified FE model contains only an isolated segment between two adjacent cracks of an RC beam nearest to an end of the FRP reinforcement. Results from the parametric study using this simplified FE model were used to establish an expression for the failure strain in the FRP, based on which a method for predicting bar-end cover separation failure was formulated.
机译:作为最有前途的结构加固技术之一,近表面贴装(NSM)FRP方法已在全世界引起了越来越多的关注,并且是外键FRP方法的有效替代方法。本论文提出了候选人在过去几年中对用NSM CFRP条(即窄矩形截面的FRP筋)抗弯加固的RC梁的行为和建模进行的理论研究。在论文的六章中,有三章涉及表面贴装到混凝土上的CFRP条的粘结行为,而其他三章则涉及CFRP条末端的脱胶破坏。; 3-D中尺度有限元建立了NSM CFRP条至混凝土粘结节点的(FE)模型,该模型采用了非常小的元素(大约1mm),研究了NSM CFRP条与混凝土之间的粘结行为,包括破坏过程,局部粘结应力分布与粘结滑移关系。通过与测试结果进行比较来验证此3-D中尺度有限元模型,然后将其用于进行参数研究。基于该参数研究的结果,建立了最大粘结应力和界面断裂能的经验方程,并提出了粘结滑移模型。建立了基于界面断裂能法的NSM CFRP条带-混凝土粘结节点粘结强度模型。在提出的粘结滑移模型的基础上,研究了CFRP胶条的粘结长度对NSM CFRP胶条与混凝土粘结强度的影响。除对NSM CFRP胶条的粘结性能进行研究外,本文还对以下方面进行了研究。常见的脱胶破坏模式发生在NSM板条的端部,涉及FRP钢筋和混凝土盖的分离(即,杆端盖分离)。首先提出了一种分析解决方案,以解决由NSM FRP加固的RC梁中FRP加固与混凝土之间的界面相互作用力。用3-D线性弹性有限元模型的结果验证了该分析解决方案。从解中获得的数值结果表明,在NSM CFRP条的截止点附近存在高的相互作用力,这解释了为什么通常会发生棒端剥离失败的现象。在对界面相互作用力进行研究之后,提出了一种二维非线性有限元模型,用于预测采用NSM FRP抗弯加固的RC梁的杆端盖分离失败。在开发此有限元模型时考虑了一些关键因素,这些因素在现有有限元模型中没有得到解决或没有同时得到解决;特别是,使用本文前面介绍的结合滑移模型对NSM FRP到混凝土的界面进行建模。基于使用该二维有限元模型获得的发现,接下来提出了一种简化的有限元模型,用于预测杆端盖分离失败。这种简化的有限元模型仅包含最接近FRP加固端的RC梁的两个相邻裂纹之间的隔离段。使用简化后的有限元模型进行参数研究的结果用于建立FRP中的破坏应变表达式,并以此为基础制定了预测杆端盖分离失效的方法。

著录项

  • 作者

    Zhang, Shi-Shun.;

  • 作者单位

    Hong Kong Polytechnic University (Hong Kong).;

  • 授予单位 Hong Kong Polytechnic University (Hong Kong).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 382 p.
  • 总页数 382
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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