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Shear Strength Model for FRP-Strengthened RC Beams with Adverse FRP-Steel Interaction

机译:FRP-钢相互作用的FRP加固RC梁的抗剪强度模型

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摘要

RC beams shear strengthened with externally bonded fiber-reinforced polymer (FRP) U strips or side strips usually fail owing to debonding of the bonded FRP shear reinforcement. Because such debonding usually occurs in a brittle manner at relatively small shear crack widths, some of the internal steel stirrups intersected by the critical shear crack may not have reached yielding at beam shear failure. Consequently, the yield stress of internal steel stirrups in such a strengthened RC beam cannot be fully utilized. This adverse shear interaction between the internal steel shear reinforcement and the external FRP shear reinforcement may significantly reduce the benefit of the shear strengthening FRP but has not been considered explicitly by any of the shear strength models in the existing design guidelines. This paper presents a new shear strength model considering this adverse shear interaction through the introduction of a shear interaction factor. A comprehensive evaluation of the proposed model, as well as three other shear strength models, is conducted using a large test database. It is shown that the proposed shear strength model performs the best among the models compared, and the performance of the other shear strength models can be significantly improved by including the proposed shear interaction factor. Finally, a design recommendation is presented.
机译:用外部粘结的纤维增强聚合物(FRP)的U型条或侧条加固的RC梁通常由于粘结的FRP剪力增强材料的脱粘而失效。因为这种脱粘通常在相对较小的剪切裂纹宽度处以脆性方式发生,所以在临界剪切裂纹处相交的一些内部钢箍筋可能尚未达到屈服。因此,不能充分利用这种加强RC梁中的内部钢箍筋的屈服应力。内部钢剪增强材料和外部FRP剪增强材料之间的这种不利的剪力相互作用可能会显着降低剪增强FRP的益处,但现有设计准则中的任何剪强度模型都未明确考虑。本文提出了一种新的剪切强度模型,通过引入剪切相互作用因子来考虑这种不利的剪切相互作用。使用大型测试数据库对提议的模型以及其他三个剪切强度模型进行了综合评估。结果表明,所提出的剪切强度模型在所比较的模型中表现最佳,并且通过包含所提出的剪切相互作用因子,可以显着改善其他剪切强度模型的性能。最后,提出了设计建议。

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