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Numerical optimization of strengthening disturbed regions of dapped-end beams using NSM and EBR CFRP

机译:使用NSM和EBR CFRP数值模拟优化小端梁扰动区域

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摘要

This paper presents a parametric investigation, based on non-linear finite element modeling, to identify the most effective configuration of carbon fiber reinforced polymers (CFRP) for strengthening reinforced concrete (RC) dapped end beams. Following a field application and laboratory tests, it focuses on effects of 24 externally bonded (EBR) and near surface mounted reinforcement (NSMR) configurations on yield strain in steel and the capacity and failure mode of dapped-end beams. The investigated parameters were the mechanical properties of the CFRP, the strengthening procedure and the inclination of the fibers with respect to the longitudinal axis. Two failure scenarios were considered: rupture and debonding of the FRP. The results indicate that high-strength NSM FRPs can considerably increase the capacity of dapped-end beams and the yielding strains in reinforcement can be substantially reduced by using high modulus fibers.
机译:本文提出了基于非线性有限元建模的参数研究,以确定用于增强钢筋混凝土(RC)端梁的碳纤维增强聚合物(CFRP)的最有效配置。经过现场应用和实验室测试后,它重点研究了24种外部粘结(EBR)和近表面安装的钢筋(NSMR)配置对钢的屈服应变以及端部横梁的能力和破坏模式的影响。研究的参数是CFRP的机械性能,加固程序和纤维相对于纵轴的倾斜度。考虑了两种故障情况:FRP破裂和脱胶。结果表明,高强度NSM FRP可以显着提高端部横梁的承载能力,并且通过使用高模量纤维可以显着降低钢筋的屈服应变。

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