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Evaluation of Ultimate Strength of Reinforced Concrete Beams Strengthened with FRP Sheets under Torsion

机译:FRP板加固钢筋混凝土梁受扭极限强度评估

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The ultimate torque of reinforced concrete (RC) members strengthened with fiber reinforced polymer (FRP) sheets does not only depend on the torque of RC members, but also on the FRP contribution to the torque. For structural design, predicting the accurate torsional capacity of the strengthened beams is considerably important. Three existing models for calculating the ultimate torsional moment of RC beams and two existing models for computing the FRP contribution to the ultimate torque are described and combined. Based on an experimental database collected from existing literature, six combinations were discussed and evaluated from the calculative values compared with the experimental results. The comparison shows that the combination of ACI 318 and fib Bulletin 14 models (Group 2), as well as Chinese and Ghobarah models (Group 6), can reasonably and accurately predict the ultimate torque of beams strengthened with FRP sheet. Furthermore, the ultimate torque of six boxsection beams strengthened with fully wrapping or U-wrap calculated by the Group 6 shows closely to the experimental results.
机译:纤维增强聚合物(FRP)片增强的钢筋混凝土(RC)构件的极限扭矩不仅取决于RC构件的扭矩,还取决于FRP对扭矩的贡献。对于结构设计,预测加固梁的准确抗扭能力非常重要。描述并结合了三个现有的用于计算RC梁极限扭矩的模型和两个现有的用于计算FRP对极限扭矩的贡献的模型。基于从现有文献中收集的实验数据库,讨论了六种组合,并根据计算值与实验结果进行了评估。比较表明,ACI 318和fib Bulletin 14模型(第2组)以及中文和Ghobarah模型(第6组)的组合可以合理,准确地预测FRP片加固的梁的极限扭矩。此外,由第6组计算的完全包裹或U形包裹加强的六个箱形截面梁的极限扭矩与实验结果非常接近。

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