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Seismic Rehabilitation of Reinforced Masonry Columns Using CFRP and GFRP Wraps

机译:CFRP和GFRP包裹物对钢筋砌体柱进行地震修复

摘要

SEISMIC REHABILITATION OF REINFORCED MASONRY COLUMNS USING CFRP AND GFRP WRAPSududNIMA FARNIA - Ph.D.udConcordia University 2011ud ududCompared to reinforced concrete, there are relatively fewer experimental and analytical studies that address the behaviour of masonry columns under combined axial load and cyclic flexure. There exist reinforced concrete masonry (RCM) columns that are part of the moment resisting system of masonry structures that are in need for seismic upgrade. Wrapping such susceptible RCM columns with carbon fibre-reinforced polymer (CFRP) or glass fibre-reinforced polymer (GFRP) composites is expected to enhance the seismic behaviour of reinforced masonry columns considerably. This study focuses on assessing the seismic performance of RCM columns wrapped with CFRP or GFRP composites. ududIn the experimental phase of this study, nine 1.4 m reinforced masonry columns were constructed and tested when subjected to constant axial force and cyclic lateral excitations. The columns have a cross-section of 390mm×390mm and were constructed using bull-nosed concrete units. The first column had no FRP wraps and was used as a control specimen while the other eight columns were wrapped using different number of layers of CFRP (or GFRP) sheets or different wrapping schemes. From the tests, the effect of FRP wraps on improving the ductile behaviour, strength and energy dissipation capacity of RCM columns were quantified.ududFurthermore, the experimental program extended to develop a stress-strain model for grouted concrete masonry strengthened with carbon fiber-reinforced polymer (CFRP) composites. Twelve five-block high prisms were constructed using bull-nose concrete blocks. As the study focuses on evaluating the contribution of FRP wraps in enhancing concrete masonry behaviour, the test variable was set to be the volumetric ratio of FRP material, and via detailed instrumentation, tests were conducted to measure the confining effect of the FRP material. ududFinally, a macro model that is capable of simulating the cyclic lateral load-deformation response of FRP-strengthened reinforced concrete masonry (RCM) columns is proposed. The data obtained from experimental results and the proposed strain-stress model were used for developing the nonlinear macro model, and it is shown that there is a good correlation between the experimental results and the predictions of the proposed model be it the load-deformation backbone curve or the full load-deformation hysteretic response of FRP-strengthened RCM columns.ud
机译:使用CFRP和GFRP缠绕对钢筋混凝土柱进行地震修复 ud udNIMA FARNIA-博士 udConcordia University 2011 ud ud ud与钢筋混凝土相比,针对砖石柱行为的实验和分析研究相对较少在轴向载荷和循环挠曲的共同作用下。存在钢筋混凝土砌体(RCM)柱,它们是需要进行地震升级的砌体结构的抗弯矩系统的一部分。用碳纤维增强聚合物(CFRP)或玻璃纤维增​​强聚合物(GFRP)复合材料包裹这种易受腐蚀的RCM柱有望大大增强增强的砖石柱的抗震性能。这项研究的重点是评估包裹有CFRP或GFRP复合材料的RCM柱的抗震性能。 ud ud在本研究的实验阶段,在承受恒定轴向力和周期性横向激励的情况下,构造并测试了9座1.4 m钢筋砌体柱。立柱的横截面为390mm×390mm,并使用牛鼻混凝土单元建造。第一列没有FRP包裹,并用作对照样品,而其他八列则使用不同数量的CFRP(或GFRP)薄板层或不同的包裹方案包裹。通过测试,量化了FRP包裹材料对改善RCM柱的延性,强度和能量消散能力的影响。 ud ud此外,该实验程序扩展到为碳纤维加固的水泥混凝土砌筑开发应力-应变模型。增强聚合物(CFRP)复合材料。使用牛鼻形混凝土砌块构造了十二个五块高棱镜。由于研究的重点是评估FRP包裹材料在增强混凝土砌筑性能方面的作用,因此将测试变量设置为FRP材料的体积比,并通过详细的仪器进行了测试,以测量FRP材料的约束作用。最后,提出了一种能够模拟FRP加固钢筋混凝土砌体(RCM)柱的周期性侧向荷载-变形响应的宏模型。从实验结果和拟议的应变-应力模型获得的数据用于开发非线性宏模型,结果表明,试验结果与拟议模型的预测值之间存在良好的相关性,无论是载荷变形主干FRP加强的RCM柱的曲线或满载-变形滞后响应。 ud

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