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Bond behavior of CFRP-concrete bonding interface considering degradation of epoxy primer under wet-dry cycles

机译:CFRP - 混凝土粘接界面的粘结行为考虑湿干循环下环氧引物的降解

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The excellent performance of the CFRP-concrete bonding interface is a key to ensure the reliability and effectiveness of the rehabilitation in concrete structures with external fiber reinforced polymer (FRP). Meanwhile, the epoxy primer, which bonded the FRP plate and the concrete substrate, is significantly affected by the aggressive environment. In this paper, two kinds of experiments which associated with the CFRP-concrete specimens and the epoxy primer after corroding in a wet-dry cycles environment were conducted. It shows that the immersion area of the epoxy primer has a significant influence on the prop-erties of the moisture absorption, and that would lead to a degradation in the mechanical properties of the CFRP-concrete interface. Simultaneously, the failure modes of the CFRP-concrete interface presented a transformation from the epoxy/concrete interaction layer to the epoxy primer layer along with the increase of aging duration. To further depict the degraded bond behavior, a time-dependent bond-slip model considering the degradation of epoxy primer was proposed, and the interface fracture energy was utilized to quantify the degree of the deterioration. By comparing with the value of interface fracture energy, it was figured out that the normal bond-slip model (Popovics model) is not enough for the safety of the concrete structures rehabilitated with external CFRP, and the proposed time-dependent bond-slip model is more accurate in evaluating the time-dependent mechanical properties of concrete structures suffering in an aggressive environment. (c) 2021 Elsevier Ltd. All rights reserved.
机译:CFRP - 混凝土粘接界面的优异性能是确保用外纤维增强聚合物(FRP)混凝土结构中康复的可靠性和有效性的关键。同时,粘合FRP板和混凝土基板的环氧底漆受到侵袭性环境的显着影响。在本文中,进行了两种与CFRP - 混凝土试样和腐蚀性干燥循环环境中的环氧引物相关的两种实验。结果表明,环氧引物的浸渍面积对吸湿性的普通型具有显着影响,并且这将导致CFRP - 混凝土界面的机械性能下降。同时,CFRP - 混凝土界面的故障模式随着老化持续时间的增加而呈现给环氧/混凝土相互作用层与环氧引物层的变化。为了进一步描绘降解的粘合行为,提出了考虑到环氧引物的降解的时间依赖性粘合模型,利用界面断裂能量来量化劣化程度。通过与界面裂缝能量的值进行比较,据测,正常粘合型(Popovics模型)对于用外部CFRP恢复的混凝土结构的安全性并不足够,以及所提出的时间依赖性粘合模型更准确地评估在积极环境中遭受的混凝土结构的时间依赖性机械性能。 (c)2021 elestvier有限公司保留所有权利。

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