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CREEP PERFORMANCE OF CFRP CONFINED CONCRETE CYLINDERS

机译:CFRP约束混凝土圆柱体的蠕变性能

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摘要

Multiple rehabilitation techniques were implemented in order to increase the life cycle of deficient structures. One of the most promising techniques is the addition of fiber reinforced polymer (FRP) strengthening systems, which have proven to be quite effective in the confinement of reinforced concrete columns. However, important concerns regarding the durability of FRP-rehabilitated structures remain to be investigated. One of these concerns is the long-term creep behavior of FRP strengthening systems. In this study, 15 CFRP confined and unconfined concrete cylinders were submitted to sustained loading. Three short-term creep tests and four long-term creep tests, each performed over three replicates, were carried out. The parameters of the study include the level of confinement and the level of sustained stress. According to the results, confinement can effectively increase the creep resistance of concrete. This increase depends primarily on the level of sustained loading according to the confined concrete strength. For the same percentage of loading in term of ultimate strength, specimens with the highest confinement level exhibited the greatest short term creep resistance.
机译:为了延长缺陷结构的使用寿命,实施了多种修复技术。最有前途的技术之一是添加纤维增强聚合物(FRP)增强系统,已证明在限制钢筋混凝土柱中非常有效。但是,有关FRP修复结构的耐久性的重要问题仍有待研究。这些问题之一是FRP增强系统的长期蠕变行为。在这项研究中,有15个CFRP约束和非约束混凝土圆柱体承受了持续荷载。进行了三个短期蠕变试验和四个长期蠕变试验,每个试验进行了三次重复。研究的参数包括限制水平和持续压力水平。根据结果​​,约束可以有效地提高混凝土的抗蠕变性。这种增加主要取决于承压混凝土强度的持续荷载水平。对于以极限强度表示的相同载荷百分比,具有最高约束水平的样品表现出最大的短期抗蠕变性。

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