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Crack-induced debonding failure in fiber reinforced plastics (FRP) strengthened concrete beams: Experimental and theoretical analysis.

机译:纤维增强塑料(FRP)增强混凝土梁中裂纹引起的脱胶破坏:实验和理论分析。

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摘要

External bonding of FRP plates to the tension substrate of RC beams has been accepted as an efficient and effective technique for flexural strengthening. In this thesis, different problems related to crack-induced debonding of the FRP plate in the flexural strengthened concrete beams have been investigated.; FRP strengthened RC beam may fail by FRP debonding from the bottom of a major flexural crack in the span. This kind of failure is studied with the direct shear test in the present research work. Our experimental investigation focuses on the effect of concrete composition on the bond behavior between FRP and concrete. Based on the test results, the bond capacity of the specimen is found to be governed by the concrete surface tensile strength, aggregate size and aggregate content. Then, the neural network is employed to derive an empirical expression for the interfacial fracture energy in terms of concrete surface tensile strength and aggregate content. Using the empirical equation, simulated bond capacity is in good agreement with experimental results.; In the FRP strengthened RC beams, debonding of the FRP plate often occurs under the presence of multiple cracks along the span. In the present thesis, experimental and theoretical investigations are performed to study the effect of multiple secondary cracks on the debonding behavior and ultimate load capacity. A new analytical model for FRP debonding under multiple cracks has been developed. The effect of the multiple secondary cracks on the shear softening in the debonded zone is explicitly considered in the model. Using the new model, the simulated values of ultimate load when debonding occurs are in good agreement with measured values.; In the FRP strengthened RC beams, concrete cover separation or plate end debonding can be avoided by applying tapers at the FRP plate end. In this situation, it is easier for FRP debonding to be induced by a major flexural crack close to the support. To study the effect of the taper end on the crack-induced debonding behavior, finite element analysis is first conducted to investigate the stress distributions along the concrete/adhesive interface and along the FRP plate. An analytical model for debonding of tapered FRP plate is then developed. The analytical and FEM results are in good agreement with one another. Using the analytical model, the effect of the taper configuration and FRP bond length on debonding behavior has been studied. (Abstract shortened by UMI.)
机译:FRP板与RC梁受拉基底的外部粘结已被接受为抗弯加固的有效技术。本文研究了与弯曲引起的混凝土梁中FRP板裂缝引起的脱胶有关的不同问题。 FRP加固的RC梁可能会由于FRP从跨度中主要挠曲裂缝的底部脱粘而失效。在目前的研究工作中,采用直接剪切试验对这种破坏进行了研究。我们的实验研究集中在混凝土成分对FRP和混凝土之间粘结性能的影响上。根据测试结果,发现试样的粘结能力受混凝土表面抗拉强度,骨料尺寸和骨料含量的控制。然后,使用神经网络根据混凝土表面抗拉强度和骨料含量得出界面断裂能的经验表达式。使用经验公式,模拟的粘结能力与实验结果吻合良好。在FRP加固的RC梁中,FRP板的剥离经常发生在跨度上存在多个裂缝的情况下。本文通过实验和理论研究来研究多个次生裂纹对脱粘行为和极限承载能力的影响。开发了一种新的FRP在多个裂纹下脱胶的分析模型。在模型中明确考虑了多个次生裂纹对脱胶区剪切软化的影响。使用新模型,发生脱粘时的极限载荷模拟值与测量值非常吻合。在FRP加固的RC梁中,可通过在FRP板端施加锥度来避免混凝土覆盖层分离或板端剥离。在这种情况下,更容易由靠近支撑件的主要挠曲裂纹引起FRP脱胶。为了研究锥度末端对裂纹引起的脱粘行为的影响,首先进行了有限元分析,以研究沿混凝土/胶粘剂界面以及沿FRP板的应力分布。然后建立了锥形FRP板脱粘的分析模型。分析结果和有限元分析结果相互吻合。使用分析模型,研究了锥度构型和FRP键长对脱胶性能的影响。 (摘要由UMI缩短。)

著录项

  • 作者

    Pan, Jinlong.;

  • 作者单位

    Hong Kong University of Science and Technology (People's Republic of China).;

  • 授予单位 Hong Kong University of Science and Technology (People's Republic of China).;
  • 学科 Engineering Civil.; Engineering Materials Science.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 262 p.
  • 总页数 262
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;工程材料学;机械、仪表工业;
  • 关键词

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