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Repair of Prestressed Concrete Beams with Damaged Steel Tendons Using Post-Tensioned Carbon Fiber- Reinforced Polymer Rods

机译:后张拉碳纤维增强聚合物棒修复带钢筋损坏的预应力混凝土梁

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摘要

Research implementing unibody clamp anchors and a simple mechanical stressing device to post-tension external, unbonded carbon fiber-reinforced polymer (CFRP) rods is presented. The experiments described in the paper concern three prestressed concrete beams: one was used.as the control beam and the other two were damaged. Damage consisted of cracked concrete that was removed and internal steel tendons that were cut to simulate vehicle collision, corrosion, or both. The repair system was then applied to the two damaged concrete beams. The CFRP repair system performed well, increasing the ultimate strength andflex-ural capacity of the damaged beams to meet or exceed the strength capacity of the control. An analytical model considering the tendon stress at ultimate and the distribution of internal forces was developed to explore design recommendations for the use of the unibody clamp anchors and stressing device for post-tensioning CFRP rods.
机译:提出了采用一体式夹紧锚和简单的机械应力装置对后张力的外部未粘结碳纤维增强聚合物(CFRP)杆进行研究的方法。本文中描述的实验涉及三个预应力混凝土梁:一个用作控制梁,另两个则损坏。损坏包括拆除的开裂混凝土和切割的内部钢腱,以模拟车辆碰撞,腐蚀或两者兼而有之。然后将修复系统应用于两个受损的混凝土梁。 CFRP修复系统表现良好,增加了受损梁的极限强度和弯曲能力,达到或超过了对照的强度。建立了一个考虑了最终筋腱应力和内力分布的分析模型,以探索有关将整体式夹紧锚和应力装置用于后张CFRP杆的设计建议。

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