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首页> 外文期刊>Journal of King Saud University-Engineering Sciences >Hybrid CFRP-steel for enhancing the flexural behavior of reinforced concrete beams
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Hybrid CFRP-steel for enhancing the flexural behavior of reinforced concrete beams

机译:用于增强钢筋混凝土梁的弯曲行为的混合CFRP钢

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摘要

Hybrid use of Carbon fiber reinforced polymer (CFRP) composites with conventional construction materials offers an ample opportunity to develop economical and high-performance structures. However, anchoring and debonding problems remains a challenge for the accomplishment of this technique. In this study, a novel application was implemented in which the CFRP sheet was integrated as internal flexural reinforcement for RC beams. The target was to evaluate the contribution of the CFRP sheet to the flexural performance and thus assess the efficiency of using the CFRP sheet as primary or supplemental flexural longitudinal steel reinforcement. CFRP sheet can be cut without difficulty to any width/length and then attaching them to the main steel bars without using epoxy. Similar to the longitudinal steel reinforcement, the CFRP strips work integrally with steel reinforcement as the concrete confines them. The investigated parameters are the number of CFRP layers, CFRP sheet length, strengthening type (internal or external strengthening). Therefore, the feasibility of internal strengthening for improving the behavior of RC beams is of vital interest. The performance of each beam was evaluated in terms of failure mode, load versus mid-span deflection curve, ultimate deflection, ultimate load capacity, stiffness, displacement ductility index, energy absorption, energy absorption ductility index, performance factor, and CFRP strain. The results show a significant improvement in the majority of the investigated parameters and show the effectiveness of internal strengthening. The internal strengthening provided external cracks arresting mechanism and even after reaching the ultimate load capacity.
机译:碳纤维增强聚合物(CFRP)复合材料的杂种使用具有常规建筑材料,提供了一种开发经济和高性能结构的充足机会。然而,锚定和剥离问题仍然是实现这种技术的挑战。在该研究中,实施了一种新的应用,其中CFRP板作为RC梁作为内部弯曲增强。目标是评估CFRP表对弯曲性能的贡献,从而评估使用CFRP纸作为初级或补充弯曲纵向钢筋的效率。可以毫无困难地切割CFRP板,然后在不使用环氧树脂的情况下将它们连接到主钢筋。与纵向钢筋相似,CFRP条带与混凝土限制在一起时与钢筋一体化。研究的参数是CFRP层,CFRP板材长度,强化型(内部或外部强化)的数量。因此,内部加强改善RC光束行为的可行性是至关重要的兴趣。在故障模式方面评估了每个光束的性能,负荷与中跨偏转曲线,终极偏转,最终负载容量,刚度,位移延展性指数,能量吸收,能量吸收延展性指数,性能因数和CFRP应变。结果表明大多数研究参数的显着改善,并显示了内部加强的有效性。内部强化提供了外部裂缝滞留机制,即使达到最终负载能力。

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