>In reinforced concrete elements strengthened with fiber-reinforced polymer sheets, premature debon'/> A concentric tube anchor system for fiber-reinforced polymer retrofit of reinforced concrete structural walls under extreme loads
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A concentric tube anchor system for fiber-reinforced polymer retrofit of reinforced concrete structural walls under extreme loads

机译:同心管锚固系统,用于在极端载荷下对钢筋混凝土结构墙进行纤维增强的聚合物改造

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>In reinforced concrete elements strengthened with fiber-reinforced polymer sheets, premature debonding of the fiber-reinforced polymer from the concrete substrate occurs due to lack of anchorage, which reduces the efficiency of the retrofitting system. This article reviews several common anchor systems and describes the development, optimization, and testing of a steel tube anchor in retrofit of reinforced concrete structural elements using externally bonded fiber-reinforced polymer sheets suitable for application to improve resistance against extreme load conditions (e.g. blast, impact, or an earthquake). A detailed review of common anchor designs including the proposed tube anchor based on previous studies on flexure-dominated fiber-reinforced polymer-strengthened reinforced concrete shear walls is presented. In this study, finite element analysis is conducted to verify the observed behavior and better understand the deformation mechanisms of the tube anchor. Finite element modeling is then used to evaluate the influence of different design parameters on its performance and propose a design methodology that can be used to optimize the tube anchor design. To verify the performance of the optimized tube anchor, it is tested in an experimental program on the in-plane seismic strengthening of two shear-dominated squat walls strengthened using fiber-reinforced polymer sheets. Experimental results reveal that the optimized tube anchor performs well in preventing premature debonding and allows the fiber-reinforced polymer composite to achieve a higher level of strain when compared to an alternative anchor system. Finally, a set of design steps for the implementation of the tube anchor in fiber-reinforced polymer retrofit applications for reinforced concrete shear walls are presented.
机译: >在钢筋混凝土中用纤维增强的聚合物片加固后,由于缺乏锚固,纤维增强的聚合物与混凝土基材过早脱离,从而降低了改造系统的效率。本文回顾了几种常见的锚固系统,并描述了钢管锚固的开发,优化和测试,该钢管锚固使用外部粘结的纤维增强聚合物板加固钢筋混凝土结构元件,适用于提高抗极端载荷条件(例如爆炸,冲击或地震)。详细介绍了常见的锚设计,包括基于先前对弯曲支配的纤维增强聚合物增强的钢筋混凝土剪力墙的研究提出的管式锚。在这项研究中,进行了有限元分析,以验证观察到的行为并更好地了解管锚的变形机理。然后使用有限元建模来评估不同设计参数对其性能的影响,并提出可用于优化管锚设计的设计方法。为了验证优化管锚的性能,我们在一个实验程序中对使用纤维增强聚合物板加固的两个剪力占主导地位的下蹲墙进行了面内地震加固测试。实验结果表明,与替代的锚固系统相比,优化的管锚在防止过早脱胶方面表现良好,并且可使纤维增强的聚合物复合材料获得更高的应变水平。最后,提出了一套在纤维增强的聚合物剪力墙加固混凝土剪力墙中应用管锚的设计步骤。

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