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Experimental study on the flexural behavior of RC beams strengthened with prestressed BFRP laminates

机译:预应力BFRP层压板加固RC梁弯曲行为的实验研究

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In this study, the flexural behavior of RC beams strengthened with prestressed basalt FRP (BFRP) laminates was investigated. Compared with the conventional carbon FRP (CFRP) laminate, BFRP exhibits a larger failure strain but lower modulus, in addition to its high strength and prominent creep rupture behavior; this makes BFRP a suitable option for cost-effective strengthening of existing beams. Nine specimens were prepared to investigate the effects of the FRP type, laminate thickness, strengthening method, reinforcement ratio, prestressing level, and adhesive on the flexural behavior of RC beams. The differences in the failure mode, L-D curve, cracking behavior, and strain development of concrete, steel, and FRP laminate were analyzed. The results demonstrated that specimen strengthened with BFRP laminate could achieve 85% of the loading capacity of the specimen strengthened with CFRP laminate under the same laminate section and but ensured a superior crack control effect and ductility. Meanwhile, a higher prestressing level led to a higher material utilization of BFRP, and the prestressing method lowered the reinforcement ratio effectively. Moreover, the bonded system had a better crack control effect and higher laminate strength utilization ratio than the unbonded system did.
机译:在该研究中,研究了预应力玄武岩FRP(BFRP)层压板加强的RC梁的弯曲行为。与常规的碳FRP(CFRP)层叠体相比,表现出BFRP较大破坏应变,但较低的模量,除了其高强度和突出蠕变断裂行为;这使得BFRP成为成本效益强化现有梁的合适选择。准备九种标本来研究FRP型,层压厚度,强化方法,增强率,预应力水平和粘合剂对RC梁的弯曲行为的影响。分析了混凝土,钢和FRP层压板的失效模式,L-D曲线,开裂行为和应变开发的差异。结果表明,用BFRP层压材料加强的样品可以在相同的层压板部分下使用CFRP层压板加强试样的负载能力的85%,但确保了较高的裂缝控制效果和延展性。同时,更高的预应力水平导致了BFRP的更高的材料利用率,预应力方法有效地降低了加强率。此外,粘合体系具有更好的裂缝控制效果和比未粘结的系统更高的层压强度利用率。

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