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Flexural strengthening of reinforced concrete beams using hybrid near-surface embedded/externally bonded fabric-reinforced cementitious matrix

机译:混合近表面嵌入式/外粘结织物增强水泥基抗弯加固钢筋混凝土梁

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The efficacy of hybrid near-surface embedded/externally bonded (NSE/EB) fabric-reinforced cementitious matrix (FRCM) for flexural strengthening of reinforced concrete (RC) beams was assessed experimentally. Bending tests were conducted on eight RC beams: 6 strengthened and two reference beams. The test parameters were (a) the internal tensile reinforcement ratio and (b) the FRCM fabric type (glass, polyparaphenylene benzobisoxazole (PBO), and carbon). The experimental results revealed that the hybrid NSE/EB-FRCM could effectively be used for the flexural strengthening of RC beams based on the test parameters. The strengthened beams exhibited an enhanced flexural behavior as evidenced by their increased load-carrying capacity (Pu) that ranged between 24.7% and 109%. The maximum enhancement in the load-carrying capacity was measured in carbon FRCM strengthened beams owing to the higher axial stiffness of carbon FRCM relative to PBO and glass FRCM. The strengthening efficacy of the FRCM was increased with an increase in the FRCM axial stiffness. An increase in the internal tensile reinforcement ratio showed an adverse effect on the gain in Pu. The stiffness factor (bf) was used to study the combined effect of the test parameters. An almost linear relationship was observed between the increase in Pu and bf with a good coefficient of correlation of 97%. Moreover, the strengthening system has increased the post-crack stiffness of the beam with an average increase of 52%. Finally, the prediction of the ACI 549 provisions was examined and compared with the experimental results. (C) 2019 Elsevier Ltd. All rights reserved.
机译:实验评估了混合近表面嵌入式/外部粘结(NSE / EB)织物增强水泥基(FRCM)对钢筋混凝土(RC)梁的抗弯效果。在8个RC梁上进行了弯曲测试:6个加强梁和2个参考梁。测试参数为(a)内部拉伸增强比和(b)FRCM织物类型(玻璃,聚对苯撑苯并双恶唑(PBO)和碳)。实验结果表明,基于测试参数,NSE / EB-FRCM混合材料可以有效地用于RC梁的抗弯加固。增强梁的抗弯性能增强,其承载能力(Pu)增加了24.7%至109%。由于碳FRCM相对于PBO和玻璃FRCM的轴向刚度更高,因此在碳FRCM增强梁中可以测量到最大的承载能力增强。 FRCM的增强功效随FRCM轴向刚度的增加而增加。内部抗张增强比的增加显示出对Pu的增加的不利影响。刚度系数(bf)用于研究测试参数的综合效果。在Pu和bf的增加之间观察到几乎线性的关系,相关系数高达97%。此外,加强系统提高了梁的裂纹后刚度,平均提高了52%。最后,检查了对ACI 549规定的预测,并将其与实验结果进行了比较。 (C)2019 Elsevier Ltd.保留所有权利。

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