Analytical Evaluation of RC Beams Strengthened with Near Surface Mounted CFRP Laminates

J. Kang, Y.H. Park, J. Park, Y. You, W. Jung
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引用次数: 29

Abstract

Synopsis: To assess the strengthening efficiency of near-surface mounted (NSM) carbon fiber reinforced polymer (CFRP) laminates according to their groove depth and disposition, 4-point bending tests were performed on 4 specimens strengthened with NSM CFRP. A structural model for the finite element method (FEM) able to simulate accurately the experimental results was determined to analyze the strengthening efficiency of the NSM technique analytically. Applying the model, parametric analysis was performed considering the groove depth and spacing of CFRP laminates. Analytical study on the groove depth revealed the existence of a critical depth beyond which the increase of the ultimate load becomes imperceptible. In other words, this means that there exists a limit of strengthening efficiency where it remains in a definite level even if the groove depth is increased. Analytical results regard to the spacing of the CFRP laminates showed that comparatively smooth fluctuations of the ultimate load were produced by the variation of the spacing and the presence of an optimal spacing range for which relatively better strengthening efficiency can be obtained. Particularly, a spacing preventing the interference between adjacent CFRP laminates and the influence of the concrete cover at the edges as well as allowing the CFRP laminates to behave independently was derived. Using the analytical results, various strengthening schemes could be established with different numbers of CFRP laminates, groove depths and dispositions of the reinforcements for a determinate quantity of reinforcements.
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近表面安装CFRP加固RC梁的分析评价
摘要:为了评估近表面安装(NSM)碳纤维增强聚合物(CFRP)层合板根据槽深和布置的强化效果,对4个用NSM CFRP加固的试件进行了四点弯曲试验。为解析分析NSM技术的强化效果,建立了能准确模拟实验结果的有限元法结构模型。应用该模型,对CFRP层合板的槽深和间距进行了参数化分析。对槽深的分析研究表明,存在一个临界深度,超过该深度,极限荷载的增加将变得难以察觉。换句话说,这意味着即使沟槽深度增加,强化效率也会保持在一定的水平上。对CFRP层合板间距的分析结果表明,层合板间距的变化会产生相对平稳的极限荷载波动,并且存在一个较优的层合板间距范围,在此范围内可以获得相对较好的加固效果。特别是,导出了防止相邻CFRP层压板之间的干扰和边缘混凝土覆盖层的影响以及允许CFRP层压板独立运行的间距。根据分析结果,在一定的加固量下,采用不同的CFRP层数、坡口深度和加固布置,可以建立不同的加固方案。
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