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In-Plane Shear Performance of Masonry Walls after Strengthening by Two Different FRPs

机译:两种不同FRP加固后砌体墙的平面内剪切性能

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This experimental study was aimed to investigate the in-plane shear performance of externally strengthened masonry walls using two types of fiber-reinforced polymer (FRP) sheets, namely, carbon FRP (CFRP) and polyethylene terephthalate-FRP (PET-FRP) sheets. Among these two, PET-FRP has a low tensile strength but possess a higher fracturing strain than CFRP. Twelve masonry walls made from clay brick were tested for static lateral loading under constant compression, after bonding CFRP and PET-FRP sheets onto their surfaces in three different configurations. The ultimate shear strength and deformation at peak load were the two important observations. The mechanisms by which load was carried were observed, varying from the initial uncracked state to the final, fully cracked state. The results demonstrate that a significant increase in the in-plane shear capacity of masonry can be achieved by bonding these two FRPs to the surface of the walls but ductility is compromised when CFRP is used. Walls retrofitting with PET-FRP in a crossdiagonal fashion show a good ductile behavior in both prepeak and postpeak regimes. The experimental data were used to assess the effectiveness of the strengthening of one FRP over the other. PET-FRP in diagonal configuration was found to be the most effective way of strengthening without compromising the two most essential aspects of masonry, that is, strength and ductility. (C) 2016 American Society of Civil Engineers.
机译:这项实验研究旨在研究使用两种类型的纤维增强聚合物(FRP)板,即碳FRP(CFRP)和聚对苯二甲酸乙二酯-FRP(PET-FRP)板的外部加固砌体墙的面内剪切性能。在这两种材料中,PET-FRP的拉伸强度低,但断裂应变比CFRP高。在将CFRP和PET-FRP片材以三种不同的配置粘合到它们的表面后,对十二块由粘土砖制成的砌体墙在恒定压缩下进行了静态侧向荷载测试。峰值载荷下的极限抗剪强度和变形是两个重要的观察结果。观察到承载载荷的机理,从最初的未破裂状态到最终的完全破裂状态不等。结果表明,通过将这两个FRP粘结到墙体表面,可以实现砌体的面内剪切能力的显着提高,但是当使用CFRP时,延展性受到损害。以对角线方式对PET-FRP进行翻新的墙在峰前和峰后均表现出良好的延展性。实验数据被用来评估一种FRP相对于另一种的强化效果。人们发现,对角线构造的PET-FRP是最有效的加固方法,而不会损害砌体的两个最基本方面,即强度和延展性。 (C)2016年美国土木工程师学会。

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