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Fracture Mechanics Approach to Geometrically Nonlinear Debonding Problems in RC Beams Strengthened with Composite Materials

机译:复合材料加固RC梁中几何非线性剥离问题的断裂力学方法

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摘要

The geometrically nonlinear debonding mechanism in reinforced concrete beams strengthened with externally bonded FRP strips is analytically investigated. The paper focuses on cases in which various loading scenarios yield compressive stresses in the bonded strip. Under these conditions, the FRP strip tends to buckle, and, in turn, to trigger and accelerate the unstable growth of the debonded region. A high order geometrically nonlinear model of the strengthened beam is developed and combined with the fracture mechanics concept of the energy release rate to provide a quantitative criterion for the initiation, propagation, and stability or instability of the debonding growth process. Numerical results that demonstrate the capabilities of the proposed modeling approach and throw light on some of the physical phenomena associated with the structural response of the strengthened beam are presented. The analysis reveals the response through the loading process and through the debonding growth process, highlights the localized effects near the debonded region, quantifies its tendency to grow, and describes the stability characteristics of the debonding mode of failure. A summary and conclusions are included in the sequel.
机译:分析研究了用外部粘结的FRP条加固的钢筋混凝土梁的几何非线性剥离机理。本文着重于各种加载方案在粘结带中产生压应力的情况。在这些条件下,玻璃钢带容易弯曲,进而触发和加速脱胶区域的不稳定生长。建立了增强梁的高阶几何非线性模型,并将其与能量释放速率的断裂力学概念相结合,为脱胶生长过程的引发,传播以及稳定性或不稳定性提供了定量标准。数值结果表明了所提出的建模方法的功能,并向与加强梁的结构响应有关的一些物理现象提供了线索。该分析揭示了加载过程和脱粘生长过程的响应,突出了脱粘区域附近的局部效应,量化了其增长趋势,并描述了脱粘破坏模式的稳定性特征。总结和结论包含在续篇中。

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