Darain Kh Mahfuz Ud, Jumaat Mohd Zamin, Shukri Ahmad Azim, Obaydullah M, Huda Md Nazmul, Hosen Md Akter, Hoque Nusrat
Centre for Innovative Construction Technology (CICT), Department of Civil Engineering, Faculty of Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia.
Architecture Discipline, Science, Engineering and Technology School, Khulna University, 9208 Khulna, Bangladesh.
Polymers (Basel). 2016 Jul 19;8(7):261. doi: 10.3390/polym8070261.
This study investigates the flexural behaviour of reinforced concrete (RC) beams strengthened through the combined externally bonded and near-surface mounted (CEBNSM) technique. The externally bonded reinforcement (EBR) and near-surface mounted (NSM) techniques are popular strengthening solutions, although these methods often demonstrate premature debonding failure. The proposed CEBNSM technique increases the bond area of the concrete⁻carbon fibre reinforced polymer (CFRP) interface, which can delay the debonding failure. This technique is appropriate when any structure has a narrow cross-sectional width or is in need of additional flexural capacity that an individual technique or material cannot attain. An experimental test matrix was designed with one control and five strengthened RC beams to verify the performance of the proposed technique. The strengthening materials were CFRP bar as NSM reinforcement combined with CFRP fabric as EBR material. The test variables were the diameter of the NSM bars (8 and 10 mm), the thickness of the CFRP fabrics (one and two layers) and the U-wrap anchorage. The strengthened beams showed enhancement of ultimate load capacity, stiffness, cracking behaviour, and strain compatibility. The ultimate capacity of the CEBNSM-strengthened beams increased from 71% to 105% compared to that of the control beam. A simulation method based on the moment-rotation approach was also presented to predict the behaviour of CEBNSM-strengthened RC beams.
本研究调查了采用外部粘贴与近表面安装相结合(CEBNSM)技术加固的钢筋混凝土(RC)梁的弯曲性能。外部粘贴加固(EBR)和近表面安装(NSM)技术是常用的加固方法,尽管这些方法常常会出现过早的脱粘破坏。所提出的CEBNSM技术增加了混凝土与碳纤维增强聚合物(CFRP)界面的粘结面积,从而可以延迟脱粘破坏。当任何结构的横截面宽度较窄或需要单独一种技术或材料无法达到的额外抗弯能力时,这种技术是合适的。设计了一个试验测试矩阵,包括一根对照梁和五根加固RC梁,以验证所提出技术的性能。加固材料是作为NSM加固的CFRP筋与作为EBR材料的CFRP织物相结合。试验变量为NSM筋的直径(8毫米和10毫米)、CFRP织物的厚度(一层和两层)以及U形包裹锚固。加固梁在极限荷载能力、刚度、开裂性能和应变协调性方面均有提高。与对照梁相比,CEBNSM加固梁的极限承载力提高了71%至105%。还提出了一种基于弯矩-转角方法的模拟方法,以预测CEBNSM加固RC梁的性能。