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首页> 外文期刊>Journal of Composites for Construction >Behavior of Precast Segmental Concrete Beams Prestressed with External Steel and CFRP Tendons
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Behavior of Precast Segmental Concrete Beams Prestressed with External Steel and CFRP Tendons

机译:用外钢和CFRP肌腱预应力预应力的预制节段混凝土梁的行为

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Precast segmental concrete beams (PSBs) prestressed with external tendons have become increasingly popular. This type of structure takes advantage of both the segmental construction method and the external prestressing technique. However, corrosion of steel tendons is still a great concern, which might increase the lifecycle costs of the structure. This study presents an experimental investigation into the use of carbon fiber-reinforced polymer (CFRP) tendons as an alternative to steel tendons for segmental concrete beams to mitigate the corrosion problems. To the best of the authors' knowledge, this is the first study using CFRP tendons to externally prestress segmental concrete beams. Four large-scale, T-shaped segmental concrete beams with different types of joints and tendon materials (steel/CFRP tendons) were built and cyclically tested under four-point loading. The test results show that CFRP tendons can replace steel tendons in segmental concrete beams as an external prestressing material. All the tested beams exhibited excellent performance regarding load-carrying capacity and ductility. The type of joint had an insignificant effect on the overall flexural behavior of the beams. After the joints opened, the beams with epoxy-coated joints behaved similarly to the beams with dry joints. The beams with CFRP tendons exhibited nonlinear behavior after the opening of joints; however, the level of nonlinearity was much less than that of the beams with steel tendons. Steel tendons achieved very high stresses at the ultimate stage, which were approximately 94% of their ultimate tensile strength. However, CFRP tendons ruptured at quite low stresses, which were approximately 78% of their nominal breaking strength on average. Finally, all the existing models examined in this study predict the tendon stress and the ultimate load of the beams with steel tendons well, but they encounter large scatter for the prediction of the tendons' stress and strength of the beams with CFRP tendons.
机译:预应力与外部肌腱预应力的预制节段混凝土梁(PSBS)变得越来越受欢迎。这种类型的结构利用了分段施工方法和外部预应力技术。然而,钢筋的腐蚀仍然是一个很大的关注,这可能会增加结构的生命周期成本。本研究提出了对使用碳纤维增强聚合物(CFRP)肌腱作为用于缓解问题的钢筋筋的替代方案的实验研究,以减轻腐蚀问题。据作者所知,这是第一次使用CFRP肌腱对外部预级节段混凝土梁的研究。具有不同类型的关节和肌腱材料(钢/ CFRP肌腱)的四个大型T形节段混凝土梁在四点装载下进行循环测试。测试结果表明,CFRP肌腱可以将节段混凝土梁中的钢筋替换为外部预应力材料。所有测试梁都表现出具有载荷能力和延展性的优异性能。关节的类型对梁的总弯曲行为有微不足道的影响。在接头打开之后,具有环氧树脂涂覆的关节的光束与具有干接头的梁类似地表现出类似的。 CFRP肌腱的光束在关节开口后表现出非线性行为;然而,非线性水平远低于钢筋筋的光束。钢筋肌腱在最终阶段达到了非常高的应力,其占最终拉伸强度的约94%。然而,CFRP肌腱在相当低的应力下破裂,平均值约为其标称断裂强度的78%。最后,本研究中检查的所有现有模型都预测了钢筋筋的梁胁迫和梁的最终载荷,但它们遇到大量散射,以预测肌腱的应力和CFRP筋的光束的强度。

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