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Bond between FRP composites and concrete: Assessment of design procedures and analytical models

机译:FRP复合材料与混凝土之间的粘结:设计程序和分析模型的评估

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摘要

The use of fibre reinforced polymers (FRPs) to strengthen reinforced concrete (RC) structures has gained a wide popularity in the last decades. Although many experimental and analytical studies are available in literature, some issues are still under discussion in the research communities. Since the typical failure mode of FRP-concrete joints is reported to be debonding of the composite from the concrete substrate, the estimation of the bond strength between FRP and concrete substrate represents a key issue for the proper use of this technology. For this reason, several analytical models for the evaluation of the FRP-concrete bond strength and few models for the estimation of the effective bond length were proposed (some of them are included in design codes/recommendations/guidelines); however they were not assessed by means of an appropriate experimental database. This work shows an assessment of twenty analytical models for the evaluation of the FRP-concrete bond strength. The assessment is based on the analysis of a wide experimental database collected from the literature. The results are provided distinguishing between the test setup adopted (single or double shear test, bending test) and the material used (post impregnated sheets or pre impregnated laminates). The accuracy of each model was evaluated by means of a simplified statistical analysis. The influence of the test setup and basic material on the accuracy of the model used was analysed as well. Lastly, the accuracy of twelve available models in providing an estimation of the effective bond length was also assessed.
机译:在过去的几十年中,使用纤维增强聚合物(FRP)来增强钢筋混凝土(RC)结构已广受欢迎。尽管文献中提供了许多实验和分析研究,但一些问题仍在研究社区中进行讨论。由于据报道,FRP-混凝土接头的典型破坏模式是复合材料与混凝土基材的脱粘,因此对FRP与混凝土基材之间的粘结强度的估算是正确使用该技术的关键问题。因此,提出了几种评估FRP-混凝土结合强度的分析模型,以及几种评估有效结合长度的模型(其中一些包含在设计规范/建议/指南中)。但是,没有通过适当的实验数据库对其进行评估。这项工作显示了评估FRP-混凝土粘结强度的20种分析模型的评估。该评估基于对从文献中收集的广泛实验数据库的分析。提供的结果可区分采用的测试设置(单或双剪切测试,弯曲测试)和所使用的材料(后浸渍板或预浸渍层压板)。通过简化的统计分析评估每个模型的准确性。还分析了测试设置和基本材料对所用模型准确性的影响。最后,还评估了十二种可用模型在提供有效键长估计方面的准确性。

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