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Improving shear capacity of RC T-beams using CFRP composites subjected to cyclic load

机译:CFRP复合材料在循环荷载下提高RC T梁的抗剪承载力

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摘要

Various methods are developed for strengthening reinforced concrete beams against shear. Nowadays, external bonding of various composite members to RC beams was very popular and successfully technique internationally. This study present test results on strengthening of shear deficient RC beams by external bonding of carbon fiber reinforced polymer (CFRP) straps. Six RC beams with a T section were tested under cyclic loading in the experimental program. Width of the CFRP straps, arrangements of straps along the shear span, and anchorage technique that were applied at the ends of straps was the main parameters that were investigated during experimental study. Inclined CFRP straps were bonded along the shear spans of shear deficient beams for strengthening against shear by using epoxy. Arrangements and width of the inclined CFRP straps were the main parameters that were changed among the specimens. The test results confirmed that all CFRP arrangements improved the strength and stiffness of the specimens significantly. The failure mode, and ductility of specimens were proved to differ according to the CFRP strap width and arrangement along the beam. Experimental results were compared with the analytical approaches that were suggested by ACI-440 Committee report.
机译:开发了各种方法来增强钢筋混凝土梁的抗剪强度。如今,各种复合材料构件与RC梁的外部粘结已非常流行,并在国际上获得了成功的技术。这项研究提出了通过碳纤维增强聚合物(CFRP)带的外部粘结来增强抗剪RC梁的测试结果。在实验程序中,在循环载荷下测试了六个T形截面的RC梁。 CFRP带的宽度,沿剪切跨度排列的带以及在带末端应用的锚固技术是实验研究期间研究的主要参数。沿剪切力不足的梁的剪切跨度粘结倾斜的CFRP带,以使用环氧树脂加强抗剪力。倾斜的CFRP皮带的排列和宽度是在样本之间改变的主要参数。测试结果证实,所有CFRP布置均可显着提高样品的强度和刚度。根据CFRP带的宽度和沿梁的排列,证明了破坏模式和延展性不同。将实验结果与ACI-440委员会报告建议的分析方法进行了比较。

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