Thamrin Rendy, Zaidir Zaidir, Desharma Silvy
Department of Civil Engineering, Faculty of Engineering, Andalas University, Padang 25163, West Sumatera, Indonesia.
Polymers (Basel). 2021 Aug 16;13(16):2738. doi: 10.3390/polym13162738.
In this study, experimental work was carried out on reinforced concrete (RC) beams strengthened with carbon fiber reinforced polymers (CFRP) plates. This study aims to examine the effect of the reinforcement ratio on the flexural behavior of these beams and propose a new model for predicting the debonding moment. Six RC beams consisting of three control beams and three beams strengthened with CFRP plates were tested. The beams were simply supported and loaded with four-point bending. The test variable was the tensile reinforcement ratio (1%, 1.5%, and 2.5%). Analytical prediction using the fiber element method was also carried out to obtain the complete theoretical response of the beam due to flexural loads. The test results show that the reinforcement ratio affected the bending performance of RC beams with CFRP plates. Following this, the experimental data from 60 beam test results from published literature and this study were analyzed. From these data, it was found that the ratio of tensile reinforcement, the ratio of modulus of elasticity of concrete, the modulus of elasticity of the plate, and plate thickness all affect the value of debonding moment. A parametric study using fiber elements and the two-dimensional finite element method was also carried out to confirm the effect of these variables on debonding failure. These variables were then used to develop an equation to predict the debonding moment of RC beams strengthened with CFRP plates, using simple statistical analysis. This analysis resulted in a simple model for predicting the debonding moment. Then the model is entered into a computer program, and the complete response of the cross-section due to debonding failure can be obtained.
在本研究中,对用碳纤维增强聚合物(CFRP)板加固的钢筋混凝土(RC)梁开展了试验工作。本研究旨在考察配筋率对这些梁抗弯性能的影响,并提出一种预测脱粘弯矩的新模型。试验了6根RC梁,其中包括3根对照梁和3根用CFRP板加固的梁。梁为简支梁,采用四点弯曲加载。试验变量为受拉配筋率(1%、1.5%和2.5%)。还采用纤维单元法进行了分析预测,以获得梁在弯曲荷载作用下的完整理论响应。试验结果表明,配筋率影响了用CFRP板加固的RC梁的弯曲性能。在此基础上,对已发表文献和本研究中的60个梁试验结果的试验数据进行了分析。从这些数据中发现,受拉配筋率、混凝土弹性模量比、板的弹性模量和板厚均会影响脱粘弯矩值。还采用纤维单元和二维有限元法进行了参数研究,以确认这些变量对脱粘破坏的影响。然后利用这些变量,通过简单的统计分析建立了一个预测用CFRP板加固的RC梁脱粘弯矩的方程。该分析得出了一个预测脱粘弯矩的简单模型。然后将该模型输入计算机程序,即可得到脱粘破坏时截面的完整响应。