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Design method and verification of steel plate anchorages for FRP-to-concrete bonded interfaces

机译:FRP-混凝土粘结界面钢板锚固的设计方法与验证

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摘要

Concrete structures Externally Bonded Reinforced (EBR) with Fibre Reinforced Polymers (FRP) have been studied and used since the end of the last century. However, several issues need to be better studied in order to improve performance. The influence of size of anchorage plates used on Reinforced Concrete (RC) structures strengthened with EBR FRP composites, the external compressive stress to be applied on the anchorage plate and the numerical simulation of this region are some of the topics that need to be more carefully studied in order to clarify the performance of the FRP-to-concrete interface within the anchorage plate region. This study proposes a design methodology to estimate the amount of external compressive stress necessary to be applied on the anchorage plate of EBR systems with FRP composites, in order to avoid premature debonding. The external compressive stress imposed on the FRP composite is intended to simulate the effect produced by a mechanical anchorage system tightened to the EBR system. The results from the design proposal, when compared with the numerical ones, were efficient enough on the prediction of the bond strength improvement of FRP-to-concrete interfaces.
机译:自上个世纪末以来,已经研究并使用了带有纤维增强聚合物(FRP)的外部粘结增强(EBR)混凝土结构。但是,为了提高性能,需要更好地研究几个问题。锚固板的尺寸对EBR FRP复合材料增强的钢筋混凝土(RC)结构的影响,锚固板上施加的外部压应力以及该区域的数值模拟是需要更仔细研究的一些主题为了阐明FRP到混凝土界面在锚固板区域内的性能,我们进行了研究。这项研究提出了一种设计方法,以估算在具有FRP复合材料的EBR系统的锚固板上必须施加的外部压应力的大小,以避免过早剥离。施加在FRP复合材料上的外部压缩应力旨在模拟由紧固到EBR系统的机械锚固系统产生的效果。设计建议的结果与数值结果相比,在预测FRP与混凝土界面的粘结强度改善方面足够有效。

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