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Environment-assisted subcritical crack growth in CFRP externally bonded concrete systems

机译:CFRP外部粘结混凝土系统中的环境辅助亚临界裂纹扩展

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摘要

The nation's current state of infrastructure is at an increasing rate of disrepair with new methods of cost-effective rehabilitation being considered over timely and costly reconstruction. Externally bonding carbon fiber-reinforced polymer plates to the tension side of a flexural beam has been one such method that has proven effective and reliable due to the outstanding performance and various advantages in CFRP materials. Gaps in long-term durability studies have been the major reason why this strengthening technique has not seen more success. It is fundamental and crucial that the mechanism of the bond interface between concrete and the strengthening material be thoroughly tested and understood. It is the intention of this study to further increase the knowledge and understanding of the long-term durability of the concrete/adhesive interface while being exposed to various aggressive environments in such externally bonded systems. Firstly, a systematical and comprehensive literature review regarding the use of CFRPs as external reinforcement, the effects of various aggressive environments on the materials being tested, and the application of linear elastic fracture mechanics is presented. An experimental study is conducted using the Boeing wedge test with a digital image correlation technique used to analyze the subcritical crack growth along the concrete/adhesive interface. Results show that subcritical cracking does exist along this interface and its effects can be significant. A theoretical study is conducted to predict the long term debonding behavior by deriving an analytical model based on Euler-Bernoulli beam theory and linear elastic fracture mechanics representing the Boeing wedge test specimen as a double-cantilever beam extending off of a Winkler elastic foundation. A finite element analysis of the test set-up is conducted as verification of the analytical model. Results of this study can and should be included in the long-term durability section to be used as an indicator of maintenance in all future infrastructure rehabilitation plans made at the federal, regional, and state levels.
机译:该国目前的基础设施状况越来越不堪重负,人们开始考虑采用经济高效的新修复方法,而不是进行及时而昂贵的重建。将碳纤维增强的聚合物板从外部结合到弯曲梁的受力侧是一种这样的方法,由于CFRP材料具有出色的性能和各种优点,因此已被证明是有效和可靠的。长期耐久性研究中的空白一直是这种强化技术未能获得更多成功的主要原因。彻底测试和理解混凝土与增强材料之间的粘结界面的机理是至关重要的。这项研究的目的是进一步增加对混凝土/胶粘剂界面的长期耐久性的认识和了解,同时使之暴露于这种外部粘结体系中的各种侵蚀性环境中。首先,系统综述了有关CFRPs作为外部增强材料的使用,各种侵蚀性环境对被测试材料的影响以及线性弹性断裂力学的应用的系统综述。使用波音楔形试验和数字图像相关技术进行了一项实验研究,该技术用于分析沿混凝土/胶粘剂界面的亚临界裂纹扩展。结果表明,该界面确实存在亚临界裂纹,其影响可能非常显着。通过建立基于Euler-Bernoulli梁理论和线性弹性断裂力学的解析模型(将波音楔形试样表示为从Winkler弹性基础延伸出来的双悬臂梁),进行了理论研究,以预测长期剥离行为。进行测试设置的有限元分析以验证分析模型。该研究的结果可以并且应该包括在长期耐久性部分中,以用作将来在联邦,区域和州各级制定的所有基础设施修复计划中的维护指标。

著录项

  • 作者

    Jennings, Elaina Noel.;

  • 作者单位

    The University of Alabama.;

  • 授予单位 The University of Alabama.;
  • 学科 Civil engineering.;Materials science.
  • 学位 M.S.
  • 年度 2011
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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