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Experimental response of double-wythe masonry panels strengthened with glass fiber reinforced polymers subjected to diagonal compression tests

机译:玻璃纤维增​​强聚合物增强的双Wythe砌体面板的对角压缩试验的响应

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摘要

Many existing unreinforced masonry buildings are seismically vulnerable and require retrofitting. The present experimental study, performed on half scale double-wythe brick masonry panels strengthened by glass fiber reinforced polymers (GFRPs), aimed to investigate the efficiency of a shear reinforcement technique using externally bonded FRP composites. The test specimens were built in a manner to simulate the traditional masonry walls built in Iran. A series of two unreinforced brick panels and five GFRP strengthened panels were subjected to diagonal tension tests. The two unreinforced diagonal tension specimens presented a brittle failure due to splitting along the compressed diagonal. The key parameter was the strengthening configuration. Experimental results pointed out that GFRP reinforcement provided a less brittle failure and a noticeable load bearing capacity increase. Performances of the different reinforcement configurations were compared in terms of strength, deformation capacity, ductility, energy absorption, stiffness and mechanism of failure. Also, near the end of the paper, experimental results of three perforated masonry shear walls are reported. The walls were tested under constant gravity load and incrementally increasing in-plane loading cycles. Two of these walls and two of the diagonal tension specimens had the same geometrical reinforcement ratio in the diagonal direction.
机译:许多现有的未加固砌体建筑在地震方面都很脆弱,需要翻新。目前的实验研究是在玻璃纤维增​​强聚合物(GFRPs)增强的半规模双石膏砖砌面板上进行的,旨在研究使用外部粘结的FRP复合材料的剪切增强技术的效率。以模拟伊朗建造的传统砌体墙的方式建造了试样。一系列的两块未加固的砖壁板和五块经过GFRP加固的板块经受了斜向拉伸测试。由于沿压缩的对角线裂开,两个未增强的对角线拉伸试样出现了脆性破坏。关键参数是加强配置。实验结果表明,玻璃纤维增​​强材料的脆性破坏较小,并且承载能力显着提高。在强度,变形能力,延展性,能量吸收,刚度和破坏机理方面比较了不同钢筋配置的性能。另外,在本文即将结束时,据报道了三个带孔砌体剪力墙的实验结果。在恒定重力载荷和递增的平面内载荷循环下对墙进行了测试。这些壁中的两个和两个对角拉伸试样在对角方向上具有相同的几何增强比。

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