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Shear behavior of RC beams externally strengthened and anchored with CFRP composites

机译:CFRP复合材料体外加固锚固的RC梁的抗剪性能

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The primary objective of this paper is to study the effectiveness of anchorage on the performance of shear deficient beams externally strengthened with CFRP composites. The overall behavior of the tested beams loaded up to failure, the onset of the cracking, and crack development with increased load and ductility were described. The use of CFRP composites is an effective technique to enhance the shear capacity of RC beams by using CFRP strips anchored into the tension side and from the top by 15-34% based on the investigated variables. Bonded anchorage of CFRP strips with width of 0.1h-0.3h to the beam resulted in a decrease in average interface bond stress and an increase in the effective strain of the FRP sheet at failure, which resulted in a higher shear capacity as compared with that of the U-wrapped beams without anchorage as well as delay or mitigate the sheet debonding from the concrete surface.
机译:本文的主要目的是研究锚固对CFRP复合材料外部增强的抗剪梁的性能的影响。描述了受力梁的整体性能,直至破坏,开裂的开始以及随着载荷和延性增加而产生的裂纹。 CFRP复合材料的使用是一种有效的技术,通过使用锚固在受拉侧和顶部的CFRP条带(基于所研究的变量),可以提高RC梁的抗剪承载力,幅度为15-34%。宽度为0.1h-0.3h的CFRP板条与梁的粘结锚固导致平均界面粘结应力减小,破坏时FRP板的有效应变增大,与之相比,其抗剪承载力更高。 U形梁没有锚固以及延迟或减轻了板材从混凝土表面上的剥离。

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