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首页> 外文期刊>Advances in civil engineering >Experimental Study on Flexural Behavior of Prestressed Concrete Beams Reinforced by CFRP under Chloride Environment
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Experimental Study on Flexural Behavior of Prestressed Concrete Beams Reinforced by CFRP under Chloride Environment

机译:CFRP氯化物环境中加固预应力混凝土梁弯曲行为的实验研究

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摘要

In order to study the effects of initial damages, CFRP reinforcement, and chloride corrosion on the flexural behavior of prestressed concrete beams, ten prestressed concrete beams were designed and manufactured, which were preloaded with 0%, 40%, and 60% of the ultimate load to crack. Then, part of the beams were reinforced by CFRP and immersed in chloride condition for 120?days. After that, the four-point bending tests were performed. Then, the sectional strain, deformation, flexural stiffness, flexural capacity, ductility, and the cracking characteristics were researched. The test results demonstrate that the sectional strain of PC beams still follows the plane cross section assumption after a pure bending deformation considering of the initial cracks, chloride corrosion, and CFRP reinforcement. The initial damage accelerates the chloride corrosion, resulting in the loss of initial stiffness, ductility, and cracking load, and the reduction in flexural capacity is less than 10%, and the failure modes of these beams are prone to change from concrete crushing to shear failure. In the cracking stage, the reinforcement of CFRP inhibits the bending deformation, leading to the reduction in stiffness degradation rates and the increase of cracking load, and the ultimate load increases by 12.8%~18.7%. The reinforcement of CFRP constrains the development of cracks, increases the cracks numbers by 50%~130%, decreases the cracking rates of beam bottoms by 52.5%, and reduces the average crack widths by 65.8% at 195?kN. It can be seen that the reinforcing effect of CFRP is more significant compared with the weakening effect of short-term chloride corrosion and initial damage on the flexural behavior.
机译:为了研究初始损伤,CFRP增强和氯化物腐蚀对预应力混凝土梁的弯曲行为的影响,设计和制造了十个预应力混凝土梁,预加载了0%,40%和60%的最终的60%负荷裂缝。然后,通过CFRP加强部分梁并浸入氯化物条件下120?天。之后,进行四点弯曲试验。然后,研究了截面应变,变形,抗弯刚度,抗弯能力,延展性和开裂特性。测试结果表明,在考虑初始裂缝,氯化物腐蚀和CFRP加固后,在纯弯曲变形后,PC光束的截面截面假设仍然遵循平面横截面假设。初始损伤加速氯化物腐蚀,导致初始刚度,延展性和裂化负荷的损失,弯曲能力的降低小于10%,并且这些梁的故障模式容易从混凝土压碎到剪切失败。在裂化阶段,CFRP的增强抑制了弯曲变形,导致刚度降低率和裂化载荷的增加,并且最终负荷增加12.8%〜18.7%。 CFRP的增强约束裂缝的发展,将裂缝数增加50%〜130%,将梁底部的开裂速度降低52.5%,并在195℃下减少65.8%的平均裂缝宽度。可以看出,与短期氯化物腐蚀和抗弯行为初始损害的弱化效果相比,CFRP的增强效果更为显着。

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