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Mitigation of premature failure of FRP bonded to concrete using mechanical substrate strengthening and FRP spike anchors

机译:使用机械基材加固和FRP钉锚减轻FRP粘结到混凝土的过早破坏

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摘要

Fiber reinforced polymers (FRPs) are being increasingly used to strengthen and repair existing reinforced concrete (RC) structures and possess many advantages with respect to other strengthening methods, such as externally bonded (EB) steel plates. It is presently understood that the strength of the concrete substrate is a key factor affecting the debonding failure mode and the overall bond strength of FRP materials. Although researchers have investigated the application of FRP anchorage systems to delay the critical debonding failure mode, increasing the strength of the concrete substrate to achieve the same goals has been little investigated to date. The present study investigates substrate strengthening techniques in an experimental program where 30-40 mm wide x 20 mm deep concrete chases within the concrete cover zone are introduced in both transverse and longitudinal orientations in order to strengthen the substrate to which the FRP is bonded. In addition, the concept of using two FRP spike anchor dowels with one end drilled into the concrete and the other end bonded to the FRP laminate is evaluated. All of the enhancement techniques tested demonstrated significant enhancements in bond strength. (C) 2016 Elsevier Ltd. All rights reserved.
机译:纤维增强聚合物(FRP)越来越多地用于增强和修复现有的钢筋混凝土(RC)结构,并且相对于其他增强方法(例如外部粘结(EB)钢板)具有许多优势。目前理解的是,混凝土基材的强度是影响FRP材料的脱粘破坏模式和整体粘结强度的关键因素。尽管研究人员已经研究了FRP锚固系统在延缓临界脱粘破坏模式方面的应用,但迄今为止,为达到相同目的而提高混凝土基材强度的研究很少。本研究在一个实验程序中研究了基底加固技术,该实验程序以横向和纵向方向在混凝土覆盖区内引入30-40 mm宽x 20 mm深的混凝土槽,以增强与FRP粘结的基底。此外,还评估了使用两个FRP钉锚定销钉的概念,一端在混凝土中钻孔,另一端粘结在FRP层压板上。所有测试的增强技术均显示出粘结强度的显着增强。 (C)2016 Elsevier Ltd.保留所有权利。

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