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A discrete spectral model for intermediate crack debonding in FRP-strengthened RC beams

机译:FRP加固RC梁中裂缝开裂的离散光谱模型

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摘要

One of the common failure modes of reinforced concrete (RC) beams strengthened in flexure with a bonded fibre-reinforced polymer (FRP) is intermediate crack (IC) debonding, which is originated at a critical section in the vicinity of flexural cracks and propagates to a plate end. Despite considerable research over the last years, few reliable and simplified IC debonding strength models have been developed. This paper firstly presents a one-dimensional model based on the discrete crack approach for concrete and the spectral element method for the numerical simulation of the IC debonding process. The progressive formation of flexural cracks and subsequent concrete-FRP interfacial debonding is formulated by the introduction of a new element able to represent both phenomena simultaneously without perturbing the numerical procedure. Furthermore, with the proposed model, high frequency dynamic response for these kinds of structures can also be obtained in a very simple and non-expensive way, which makes this procedure very useful as a tool for diagnoses and detection of debonding in its initial stage by monitoring the change in local dynamic characteristics.
机译:用粘结的纤维增强聚合物(FRP)进行挠曲加固的钢筋混凝土(RC)梁的常见破坏模式之一是中间裂纹(IC)脱胶,该裂纹起源于挠性裂纹附近的临界区,并传播到板端。尽管在过去的几年中进行了大量的研究,但很少开发出可靠且简化的IC剥离强度模型。本文首先提出了一种基于混凝土离散裂纹方法的一维模型和用于IC脱胶过程数值模拟的频谱元素方法。弯曲裂缝的逐步形成和随后的混凝土-FRP界面剥离是通过引入一种新的元素来制定的,该元素能够同时表示两种现象而不会干扰数值程序。此外,利用所提出的模型,还可以以非常简单且不昂贵的方式获得针对此类结构的高频动态响应,这使得该程序作为诊断和检测脱胶初期的工具非常有用。监测局部动态特征的变化。

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