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Experimental Investigation of Fatigue Debonding Growth in FRP–Concrete Interface

机译:FRP-混凝土界面疲劳脱胶生长的实验研究

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摘要

An externally bonded fiber reinforced polymer (FRP) plate (or sheet) is now widely used in strengthening bending members due to its outstanding properties, such as a high strength to weight ratio, easy operating, corrosion and fatigue resistance. However, the concrete member strengthened by this technology may have a problem with the adhesion between FRP and concrete. This kind of debonding failure can be broadly classified into two modes: (a) plate end debonding at or near the plate end, and (b) intermediate crack-induced debonding (intermediate crack-induced (IC) debonding) near the loading point. The IC debonding, unlike the plate end debonding, still needs a large amount of investigation work, especially for the interface under fatigue load. In this paper, ten single shear pull-out tests were carried out under a static or fatigue load. Different load ranges and load levels were considered, and the debonding growth process was carefully recorded. The experimental results indicate that the load range is one of the main parameters, which determines the debonding growth rate. Moreover, the load level can also play an important role when loaded with the same load range. Finally, a new prediction model of the fatigue debonding growth rate was proposed, and has an excellent agreement with the experimental results.
机译:现在,外部粘结的纤维增强聚合物(FRP)板(或片)由于其出色的特性(例如高的重量比,易于操作,耐腐蚀和耐疲劳性)而广泛用于增强弯曲构件。但是,用这种技术加固的混凝土构件可能在玻璃钢和混凝土之间的粘结方面存在问题。这种脱粘失败可大致分为两种模式:(a)在板端或附近的板端脱粘,以及(b)在加载点附近的中间裂纹引起的脱粘(中间裂纹引起的(IC)脱粘)。与板端剥离不同,IC剥离仍然需要大量的研究工作,尤其是在疲劳载荷下的界面。本文在静态或疲劳载荷下进行了十次单剪拔试验。考虑了不同的载荷范围和载荷水平,并仔细记录了脱粘生长过程。实验结果表明,载荷范围是决定剥离速度的主要参数之一。此外,在相同的负载范围内负载时,负载水平也可以起重要作用。最后,提出了一种新的疲劳剥离速度预测模型,与实验结果吻合良好。

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