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Finite element modelling of externally shear-strengthened beams using fibre reinforced polymers.

机译:使用纤维增强聚合物的外部抗剪加固梁的有限元建模。

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摘要

The need for structural rehabilitation of concrete structures all over the world is well known. A great amount of research is going on in this field. The use of fibre reinforced polymer (FRP) plate bonding has been shown to be a competitive solution regarding both the structural performance and the economical aspects. Shear strengthening of reinforced concrete beams is required when the beam is deficient in shear, or when its shear capacity falls below its flexural capacity after flexural strengthening. An accepted technique for the shear strengthening of reinforced concrete beams is to provide an additional FRP web reinforcement in the form of externally bonded FRP sheets.;Limited finite element analyses have been carried out on FRP shear-strengthened beams. As a contribution to fill this need, a versatile numerical model is developed in this study to predict the response of reinforced concrete beams strengthened in shear with bonded FRP composites, with a particular emphasis on the interfacial behaviour and debonding phenomena. This research consists of three phases. They are: (1) the development of a reliable numerical model that can capture the real behaviour of FRP shear-strengthened beams; (2) the use of the proposed numerical model to verify various cases having different strengthening configurations: beams with vertical and inclined side-bonded FRP sheets, the U-wrap scheme, as well as anchored FRP sheets and; (3) a parametric study conducted to identify design variables that have the greatest influence on the behaviour of shear-strengthened beams such as the steel stirrup reinforcement ratio, concrete compressive strength, FRP elastic modulus, FRP thickness, and ratio between FRP width to beam width.;The proposed numerical model is validated against published experimental results. The predicted results are shown to compare very well with test results. It is shown that the formulation of the FRP/concrete interfacial behaviour is essential to analyses utilizing finite element models. The implementation of interface elements produces accurate predictions of the response of shear-strengthened beams. Furthermore, the numerical analysis provides useful information on the slips and propagation of debonding along the FRP/concrete interfaces. Predicted strain profiles along the FRP sheet depth are also presented.;Regression equations based on the statistical approach of the response surface methodology (RSM) are developed. New design equations to describe the FRP axial effective strain at the state of debonding are proposed for both side-bonded and U-wrap strengthening schemes. The proposed design equations can be used to provide simple design guidelines to predict the FRP shear contribution. Some of the results of this thesis research can be found in Godat et al. [2007a,b].;Over the last few years, a considerable amount of research has been conducted on shear strengthening with FRP composites and that has led to a better understanding of the behaviour. Hence, many design equations have been proposed to design shear-strengthened beams. Most of the parameters that control the behaviour of shear-strengthened beams have been addressed. However, the design equations describing the behaviour of shear-strengthened beams are not sufficient to properly evaluate the shear contribution of the FRP composites. This might be attributed to the absence of an accurate numerical model, which is more economical than the experimental tests, to capture the complexities of shear-strengthened beams and to lead to a better understanding of the failure mechanisms.
机译:全世界对混凝土结构进行结构修复的需求是众所周知的。该领域正在进行大量研究。就结构性能和经济方面而言,已证明使用纤维增强聚合物(FRP)板粘结是一种竞争性解决方案。当抗剪强度不足或抗弯加固后抗剪承载力低于抗弯承载力时,需要对钢筋混凝土梁进行抗剪加固。钢筋混凝土梁抗剪加固的一项公认技术是以外部粘结的FRP板形式提供额外的FRP腹板加固。;已对FRP抗剪加固梁进行了有限元分析。为了满足这种需求,本研究开发了一个通用的数值模型,以预测在粘结FRP复合材料的剪切作用下增强的钢筋混凝土梁的响应,特别强调界面行为和脱胶现象。这项研究包括三个阶段。它们是:(1)建立一个可靠的数值模型,可以捕获FRP剪力增强梁的真实行为; (2)使用所提出的数值模型来验证具有不同加固配置的各种情况:具有垂直和倾斜侧粘结FRP板的梁,U型包裹方案以及锚固的FRP板;以及(3)进行参数研究,以确定对剪力增强梁的性能影响最大的设计变量,例如钢箍筋的配比,混凝土抗压强度,FRP弹性模量,FRP厚度以及FRP与梁的宽度之比所提出的数值模型已针对已发表的实验结果进行了验证。预测结果显示与测试结果很好地比较。结果表明,FRP /混凝土界面行为的公式化对于利用有限元模型进行分析至关重要。接口元素的实现产生了抗剪加固梁响应的准确预测。此外,数值分析提供了有关沿FRP /混凝土界面脱粘的滑移和传播的有用信息。给出了沿玻璃钢片材深度的预测应变分布。;建立了基于响应面方法(RSM)的统计方法的回归方程。针对侧粘结和U型包裹加固方案,提出了描述脱粘状态下FRP轴向有效应变的新设计方程。所提出的设计方程式可用于提供简单的设计准则,以预测FRP剪切贡献。该论文研究的一些结果可以在Godat等人中找到。 [2007a,b] .;在过去的几年中,已经进行了大量有关使用FRP复合材料进行剪切增强的研究,这使人们对行为有了更好的了解。因此,提出了许多设计方程式来设计抗剪加固梁。已经解决了控制抗剪增强梁性能的大多数参数。但是,描述抗剪增强梁性能的设计方程式不足以正确评估FRP复合材料的抗剪贡献。这可能归因于缺乏精确的数值模型,该模型比实验测试更经济,可以捕获抗剪增强梁的复杂性并更好地理解破坏机理。

著录项

  • 作者

    Godat, Ahmed.;

  • 作者单位

    Universite de Sherbrooke (Canada).;

  • 授予单位 Universite de Sherbrooke (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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