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Flexural behavior of RC beams strengthened with steel-FRCM composite

机译:钢-FRCM复合材料增强RC梁的抗弯性能

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This paper presents the results of an experimental investigation of the flexural response of reinforced concrete (RC) beams strengthened using externally bonded steel fiber reinforced cementitious matrix (steel-FRCM) composite. Steel-FRCM composite strips were bonded to the tension face of four RC beams, which were tested in four-point bending. Parameters varied were the presence/absence of the external (coating) layer of the matrix, presence/absence of U-wrap anchorages, and loading rate. Results are compared with those from single-lap direct-shear tests conducted on the same composite. The direct-shear tests showed that debonding of steel-FRCM joints is characterized by fiber slippage and fracture of the matrix layer at the internal matrix layer-fiber interface. In the beam tests, the strengthening system increased the yield load by 15-21% relative to the unstrengthened beam. The ratio of the load at which debonding occurred to the load at yielding ranged from 1.11 to 1.19 for each strengthened beam. The load rates employed and the presence of the external matrix layer did not appear to significantly affect the failure mode or the load and midspan displacement at debonding. The presence of the U-wraps helped restrain the peel-off of the composite observed in strengthened beams without the U-wrap, however, they did not restrain the fiber slippage at the ends of the composite, which inhibited composite action. Average values of the maximum fiber strain at composite debonding determined using strain profiles from strain gages, an approximate method, and moment-curvature analysis were 0.54%, 0.73%, and 0.83%, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了使用外部粘结的钢纤维增强水泥基(steel-FRCM)复合材料增强的钢筋混凝土(RC)梁的挠曲响应的实验研究结果。将钢-FRCM复合材料条粘结到四个RC梁的受拉面上,并进行四点弯曲测试。改变的参数是基质的外(涂层)层的存在/不存在,U-wrap锚固的存在/不存在以及加载速率。将结果与对相同复合材料进行的单圈直接剪切试验的结果进行比较。直接剪切试验表明,钢-FRCM接头的脱粘特征在于纤维滑移和内部基体层-纤维界面处的基体层断裂。在梁测试中,相对于未加强的梁,加固系统将屈服载荷提高了15-21%。对于每个加强梁,发生脱粘的载荷与屈服载荷的比率范围为1.11至1.19。所采用的负载速率和外部基体层的存在似乎并未显着影响破坏模式或脱胶时的负载和中跨位移。 U形卷材的存在有助于抑制在没有U形卷材的情况下在增强梁中观察到的复合材料剥离,但是,它们不抑制复合材料末端的纤维滑移,从而抑制了复合材料的作用。使用应变计,近似方法和弯矩曲率分析确定的应变曲线确定的复合材料剥离时的最大纤维应变的平均值分别为0.54%,0.73%和0.83%。 (C)2016 Elsevier Ltd.保留所有权利。

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