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Bond mechanism and bond strength of GFRP bars to concrete: A review

机译:GFRP筋与混凝土的粘结机理和粘结强度研究进展

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摘要

Glass fiber-reinforced polymer (GFRP) reinforcements are taken as an alternative solution for the deterioration of civil infrastructures. GFRP bars have received increasing attention due to low cost compared to carbon fiber-reinforced polymer (CFRP) bars. Bond characteristic of GFRP bars in concrete is the most critical parameter for implementation of the material to the corrosion-free concrete structures. Unlike steel reinforcement, GFRP materials behave anisotropic, non-homogeneous and linear elastic properties, which may result in different force transfer mechanism between reinforcement and concrete. With the purpose of covering the most valuable contributions regarding bond mechanism in the past work, a comprehensive review focusing on the failure mode and bond strength is carried out in this paper. A database consisted of 682 pullout-test specimens was created to observe the factors affecting bond behavior. Basic relationship between bond strength/slip and factors was analyzed accordingly. In addition, the development of bond degradation under environmental conditions, such as freezing-thawing cycling, wet-dry cycling, alkaline solutions and high temperature was presented thereafter. These environmental influences need to be further investigated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:玻璃纤维增​​强聚合物(GFRP)增强材料被用作替代民用基础设施的解决方案。与碳纤维增强聚合物(CFRP)条相比,由于成本低廉,GFRP条受到越来越多的关注。 GFRP钢筋在混凝土中的粘结特性是将材料应用于无腐蚀混凝土结构的最关键参数。与钢筋不同,GFRP材料表现出各向异性,不均匀和线性弹性,这可能导致钢筋和混凝土之间的力传递机制不同。为了涵盖过去工作中有关粘结机制的最有价值的贡献,本文对破坏模式和粘结强度进行了全面的综述。建立了一个包含682个拔出测试样本的数据库,以观察影响粘结行为的因素。相应地分析了粘结强度/滑动率与因素之间的基本关系。此外,此后还提出了在诸如冷冻-融化循环,湿-干循环,碱性溶液和高温的环境条件下键降解的发展。这些环境影响需要进一步调查。 (C)2016 Elsevier Ltd.保留所有权利。

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