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Flexural behavior of large-size RC beams strengthened with side near surface mounted (SNSM) CFRP strips

机译:侧面近表面贴装(CFSM)板增强了大型RC梁的抗弯性能

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摘要

Taking the reinforcement of monorail guide-way as the background, the effectiveness of SNSM carbon fiber reinforced polymer (CFRP) strengthening technique applied for the large-size reinforced concrete (RC) beams was evaluated. First, considering the effect of curing condition, the single shear pull-out tests of NSM CFRP were carried out to determine proper curing temperature and time. Second, considering the influence of CFRP spacing, prestress level of CFRP and longitudinal reinforcement ratio, the flexural experiments of strengthened beam with SNSM CFRP technique were carried out by four-point loading method. The results showed that the bond behavior between CFRP and concrete represented a negative quadratic curve with curing temperature and a positive arc-tangent curve with curing time. The flexural capacity of strengthened beams was obvious higher than the un-strengthened beam, which were increasing with the improvement of prestress level and the reduction of CFRP spacing. However, the improvement of flexural capacity of strengthened beam with prestressed CFRP was not obvious with the increase of prestress level, and the longitudinal reinforcement ratio had a negative impact on the flexural capacity. Finally, considering above-mentioned factors, a predicted model of flexural capacity and mid-span deflection for the beam strengthened with SNSM CFRP was developed and validated.
机译:以单轨铁路的加固为背景,评估了SNSM碳纤维增强聚合物(CFRP)加固技术应用于大型钢筋混凝土(RC)梁的有效性。首先,考虑固化条件的影响,进行了NSM CFRP的单剪切拉拔试验,以确定合适的固化温度和时间。其次,考虑到CFRP间距,CFRP的预应力水平和纵向配筋率的影响,采用四点加载法进行了SNSM CFRP加固梁的抗弯试验。结果表明,CFRP与混凝土之间的粘结行为在固化温度下呈负二次曲线,在固化时间下呈正反正切曲线。加强梁的抗弯能力明显高于未加强梁,其随着预应力水平的提高和CFRP间距的减小而增加。但是,随着预应力水平的提高,预应力CFRP加固梁的抗弯能力的提高并不明显,并且纵向配筋率对抗弯能力有负面影响。最后,考虑到上述因素,建立并验证了SNSM CFRP加固梁的抗弯承载力和中跨挠度的预测模型。

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