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首页> 外文期刊>PCI journal >Behavior of Prestressed Concrete Box-Beam Bridges Using CFRP Tendons
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Behavior of Prestressed Concrete Box-Beam Bridges Using CFRP Tendons

机译:CFRP筋作用的预应力混凝土箱梁桥性能

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align="left">This paperpresents the results of an experimental and analytical study of the flexural response of concrete box beams prestressed with carbon fiber reinforced polymer (CFRP) tendons Diversified? Composites Inc. (DCI) for three highway bridge models. Each bridge model comprises two precast concrete box beams pretensioned using DCI tendons. In one of the bridge models, the box beams were also prestressed using 12 unbonded, DCI post-tensioning tendons. in the second bridge model, the box beams were not provided with post-tensioning tendons. The third bridge model comprised box beams provided with 12 unbonded tendons without any force. This study consisted of predicting parameters such as transfer lengths of DCI tendons, ultimate loads, deflections, post-tensioning? forces, strains, and energy ratios. This paperaisopresents a comparison of experimental and analytical results. It was observed that the measured transfer lengths of DCI tendons ranged from 25 to? 32 times the nominal tendon diameter. The bridge model comprising box beams prestressed using both pretensioning and unbonded post-tensioning tendons resulted in higher load capacity and lower ductility compared with the other two bridge models. The close agreement between experimental and analytical values signifies the accuracy of a strain-controlled approach in analyzing CFRP box beam bridge models.
机译:align =“ left”>本文介绍了用碳纤维增强聚合物(CFRP)筋预应力的混凝土箱形梁的挠曲响应的实验和分析研究结果。 Composites Inc.(DCI)适用于三种公路桥梁模型。每个桥梁模型都包含两个使用DCI筋预拉伸的预制混凝土箱形梁。在其中一种桥梁模型中,还使用12条未粘结的DCI后张预应力筋对箱形梁进行预应力。在第二个桥梁模型中,箱形梁没有设置后张筋。第三种桥梁模型包括箱形梁,该箱形梁在没有任何力的情况下提供了12条未粘结的筋。这项研究包括预测参数,例如DCI肌腱的转移长度,极限载荷,挠度,后张拉力。力,应变和能量比。本文介绍了实验结果和分析结果的比较。观察到,测得的DCI肌腱的转移长度范围为25到50毫米。肌腱标称直径的32倍。与其他两个桥梁模型相比,包括使用预张紧和未粘结的后张预应力筋预应力的箱形梁的桥梁模型导致更高的承载能力和更低的延展性。实验值和分析值之间的紧密一致性表明,在分析CFRP箱梁桥模型中采用应变控制方法的准确性。

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