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Flexural behaviour of precast segmental concrete beams internally prestressed with unbonded CFRP tendons under four-point loading

机译:四点荷载作用下无粘结CFRP筋内部预应力分段混凝土梁的抗弯性能

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This study investigates the use of carbon fibre reinforced polymer (CFRP) tendons on precast segmental beams (PSBs) to tackle the corrosion problems which are likely to occur at joint locations of PSBs prestressed with steel tendons. Up to date, the use of CFRP tendons was extensively documented for monolithic beams while their application on PSBs has not been reported yet. Three precast segmental T-section beams including two beams with unbonded CFRP and one with steel tendons were built and tested under four-point loads in this study. The test results showed that CFRP tendons can be well used to replace the steel tendons on PSBs. The beams with CFRP tendons demonstrated both high strength and high ductility as compared to the beam with steel tendons. However, the stresses in the unbonded CFRP tendons at ultimate loading conditions of the tested beams were low, ranging from only about 66% to 72% of the nominal breaking tensile strength. The type of joints i.e. dry and epoxied, greatly affects the initial stiffness of the beams but has no effect on the opening of joints at ultimate loading stage. Moreover, a comprehensive examination on four existing code equations to predict the stress in the unbonded tendons showed that the four examined codes predicted well the stress at the ultimate loading condition of the unbonded steel tendons, however, they significantly under predicted those in the CFRP tendons. A modification in the strain reduction coefficient used by ACI 440.4R for predicting the stress increment in unbonded CFRP tendons of monolithic beams is therefore proposed for PSBs based on the experimental results.
机译:这项研究调查了碳纤维增强聚合物(CFRP)筋在预制分段梁(PSB)上的使用,以解决可能在用钢筋预应力的PSB接缝处发生的腐蚀问题。迄今为止,CFRP筋在单片梁中的使用已有大量文献记载,但尚未报道它们在PSB上的应用。在此研究中,构建了三段预制的T形截面T型截面梁,其中包括两根无粘结CFRP梁和一根带钢索筋。测试结果表明,CFRP筋可以很好地替代PSB上的钢筋。与具有钢筋的梁相比,具有CFRP筋的梁既具有高强度又具有高延展性。但是,在测试梁的极限载荷条件下,未粘结的CFRP筋的应力较低,仅为标称断裂抗拉强度的66%至72%。节点的类型,即干燥和环氧,会极大地影响梁的初始刚度,但对最终荷载阶段的节点打开没有影响。此外,对四个现有代码方程进行了全面检查,以预测未粘结钢筋束中的应力,结果表明,这四个被检验的代码都很好地预测了未粘结钢腱的极限载荷条件下的应力,但是,它们明显低于CFRP钢筋中的预测值。 。因此,基于实验结果,建议对PSB进行ACI 440.4R用于预测整体梁的未粘结CFRP筋中应力增加的应变减小系数的修改。

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