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Flexural Behaviour of RC Beams Strengthened with Prestressed CFRP NSM Tendon Using New Prestressing System

机译:采用新预应力系统预应力CFRP NSM肌腱加强RC光束的弯曲行为

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摘要

CFRP has been used mainly for strengthening of existing structures in civil engineering area. Prestressed strengthening is being studied to solve the bond failure model featuring EBR and NSMR methods. The largest disadvantage of the prestressing system is that the system cannot be removed until the filler is cured. This problem lowers the turning rate of the equipment and makes it limited to experiment, which stresses the necessity of a new prestressing system. Therefore, the present study applies a new prestressing systemwhich reliefs the need to wait until the curing of the filler after jacking to the prestressing of NSMR and examines the effect of the prestressing size and location of the anchorage on the strengthened behaviour. The experimental results show that the crack and yield loads increase with higher level of prestress, while the ductility tends to reduce, and the anchor plate should be installed within the effective depth d(s) to minimize the occurrence of shear-induced diagonal cracks. The comparison of the experimental results and results by section analysis shows that the section analysis could predict the maximum load of the specimens strengthened by prestressed NSMR within an error between 4% and 6%.
机译:CFRP主要用于加强土木工程区现有结构。正在研究预应力的加强来解决EBR和NSMR方法的债券失败模型。预应力系统的最大缺点是,在填料固化之前不能去除系统。该问题降低了设备的转速,并使其仅限于实验,这强调了新预应力系统的必要性。因此,本研究适用新的预应力系统,浮雕需要等待填料后升温到NSMR的预应力并检查预应力尺寸和锚定位置对加强行为的影响。实验结果表明,裂缝和产量负荷随着更高水平的预应力而增加,而延展性倾向于减少,并且锚板应安装在有效深度d(s)内,以最小化剪切引起的对角线裂缝的发生。实验结果的比较和剖面分析结果表明,截面分析可以预测预应力NSMR的标本的最大载荷在4%和6%之间的误差。

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    Korea Inst Civil Engn &

    Bldg Technol Struct Engn Res Inst Goyang Si South Korea;

    Korea Inst Civil Engn &

    Bldg Technol Struct Engn Res Inst Goyang Si South Korea;

    Korea Inst Civil Engn &

    Bldg Technol Struct Engn Res Inst Goyang Si South Korea;

    Korea Inst Civil Engn &

    Bldg Technol Struct Engn Res Inst Goyang Si South Korea;

    Korea Inst Civil Engn &

    Bldg Technol Struct Engn Res Inst Goyang Si South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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  • 入库时间 2022-08-20 02:15:28

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