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Analysis of CFRP Strap-Strengthened Reinforced Concrete Beams Using the Modified Compression Field Theory (MCFT)

机译:用改进的压缩场理论(MCFT)分析CFRP皮带强化钢筋混凝土梁

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External, prestressed carbon fiber reinforced polymer (CFRP) straps can be used to enhance the shear strength of existing reinforced concrete beams. In order to effectively design a strengthening system, a rational predictive theory is required. The current work investigates the ability of the modified compression field theory (MCFT) to predict the behavior of rectangular strap strengthened beams where the discrete CFRP strap forces are approximated as a uniform vertical stress. An unstrengthened control beam and two strengthened beams were tested to verify the predictions. The experimental results suggest that the MCFT could predict the general response of a strengthened beam with a uniform strap spacing < 0.9d. However, whereas the strengthened beams failed in shear, the MCFT predicted flexural failures. It is proposed that a different compression softening model or the inclusion of a crack width limit is required to reflect the onset of shear failures in the strengthened beams.
机译:外部,预应力碳纤维增强聚合物(CFRP)带可用于增强现有钢筋混凝土梁的剪切强度。为了有效地设计强化系统,需要一个合理的预测理论。目前的工作研究了修改的压缩场理论(MCFT)来预测离散CFRP带力近似为均匀垂直应力的矩形表带加强梁的行为的能力。测试了未加强的控制光束和两个强化光束以验证预测。实验结果表明,MCFT可以预测强化光束的一般响应,其具有均匀带间距<0.9d。然而,而强化的光束在剪切中失效,而MCFT预测的弯曲故障。提出,需要不同的压缩软化模型或包含裂缝宽度极限,以反映加强光束中的剪切故障的发作。

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