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Numerical and experimental investigation into the fatigue life of FRP bonded to concrete and anchored with bidirectional fabric patches

机译:与混凝土粘合疲劳寿命的数值和实验研究,用双向织物贴片锚定

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摘要

Although extensive research has been conducted into the use of fibre reinforced polymers (FRPs) in strengthening of concrete structures under static loads, their fatigue behaviour when subjected to cyclic loading still requires investigation. The issue of fatigue performance of FRP strengthening systems is mostly relevant to the strengthening of concrete bridges which are subjected to significant traffic loading cycles throughout their lifetime. In order to offset some of the shortcomings of externally bonded FRPs, anchorage systems are commonly used in bridge strengthening applications in conjunction with FRPs externally bonded to concrete in order to mitigate premature debonding failure. This paper presents a summary of numerical and experimental investigations conducted to evaluate the fatigue performance of externally-bonded FRP laminates anchored with bidirectional fibre patch anchors. The anchored laminates were bonded to reinforced concrete (RC) blocks and subjected to various cyclic loading scenarios. Parameters such as the stress range, peak cyclic stress level, and the corresponding number of cycles prior to failure were noted. The results were used to generate an S-N curve relationships. A finite element model was developed and calibrated based on the experimental results. Good correlation was achieved between the experimental and FE results in relation to the maximum number of cycles, strain distribution, and mode of failure. The outcomes of this study showed that no fatigue degradation was observed when the peak cycling stress level was less than 60% of the ultimate static capacity. Further details of the results and recommendations for future research work are also provided.
机译:虽然已经进行了广泛的研究,但在使用纤维增强聚合物(FRPS)中,在加强静态载荷下的混凝土结构中,它们在受到循环加载时的疲劳行为仍需要调查。 FRP强化系统的疲劳性能问题主要与强化混凝土桥的强化相关,在整个寿命中受到重大交通载荷循环。为了抵消外部粘合FRP的一些缺点,锚固系统通常用于桥梁加强应用,与外部结合到混凝土的FRPS,以减轻过早的剥离失败。本文介绍了对使用双向纤维贴片锚固锚定的外部粘合的FRP层压板的疲劳性能进行了数值和实验研究的概述。将锚定的层压板键合至增强混凝土(RC)块,并进行各种循环加载方案。注意到失败前的应力范围,峰值循环应力水平和相应数周期的参数。结果用于产生S-N曲线关系。基于实验结果开发和校准有限元模型。在实验和Fe之间实现了良好的相关性与最大循环,应变分布和失效模式相关。该研究的结果表明,当峰值循环应力水平小于最终静态容量的60%时,没有观察到疲劳降解。还提供了未来研究工作的结果和建议的进一步详情。

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