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NSM Rebar and CFRP laminate strengthening for RC columns subjected to cyclic loading

机译:用于循环荷载作用的RC柱的NSM钢筋和CFRP层压板加固

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摘要

An experimental program is achieved in this study conducted of three reinforced concrete column-stub specimens tested under increased cyclic lateral load to show the enhancement gained from using two well-known external strengthening techniques, which are NSM rebar and CFRP laminate, applied to partially cracked columns. Test data indicates that both of these strengthening techniques are efficient to enhance the overall behavior of the retrofitted columns like crack pattern, yield and ultimate cyclic load capacities, ductility ratio, dissipated energy capacity, initial stiffness degradation, and fracture mode. Strengthening Using CFRP laminates showed better enhancement in crack formation and propagation, while using MSN rebar showed better enhancement in load capacities, ductility ratio, and dissipated energy. Therefore, using NSM rebar may be a better choice for retrofitting and strengthening such cracked reinforced concrete columns that may be subjected to seismic event conditions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中完成了一个实验程序,对三个钢筋混凝土柱短管试样进行了循环侧向荷载测试,以显示通过使用两种众所周知的外部加固技术(NSM钢筋和CFRP层压板)应用于部分开裂而获得的增强效果列。测试数据表明,这两种加固技术均能有效地提高改型后的圆柱的整体性能,例如裂缝模式,屈服强度和极限循环荷载能力,延性比,耗能能力,初始刚度退化和断裂模式。加强使用CFRP层压板可以更好地增强裂纹形成和扩展,而使用MSN钢筋则可以更好地增强承载能力,延展性比和耗散能量。因此,使用NSM钢筋可能是翻新和加固此类开裂的钢筋混凝土柱(可能会遭受地震事件条件)的更好选择。 (C)2016 Elsevier Ltd.保留所有权利。

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