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Environmental Fatigue and Static Behavior of RC Beams Strengthened with Carbon-Fiber-Reinforced Polymer

机译:碳纤维增强聚合物加固RC梁的环境疲劳和静态特性

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摘要

Many countries around the world have tremendous needs to repair and strengthen their transportation infrastructure. Almost everywhere, traffic loads have reached levels largely exceeding design expectations. Northern countries also experience severe winter conditions that are combined with an extensive use of deicing salts and accelerate structural deterioration. In Canada, the extent of deterioration has prompted many authorities, including the federal and provincial governments, to investigate the potential use of fiber-reinforced polymer products to extend the life of their existing structures. However, it is widely recognized that the large-scale implementation of these products is often impaired by the lack of data on their durability. This paper presents an experimental project undertaken in order to assess the durability of reinforced concrete beams externally strengthened with two types of carbon-fiber-reinforced polymer (CFRP). The beams were first exposed to either wet-dry cycles or continuous immersion in water and then were loaded in fatigue. Finally, they were tested quasi-statically under four-point bending up to failure. The test results presented here provide some insights on the potential long-term performance of CFRP-strengthened beams exposed to severe environmental conditions.
机译:世界上许多国家对维修和加强运输基础设施都有巨大的需求。几乎在所有地方,交通负荷都已大大超出设计预期的水平。北部国家也经历了严峻的冬季条件,并大量使用了除冰盐并加速了结构恶化。在加拿大,变质的程度促使许多政府机构,包括联邦和省政府,开始调查纤维增强聚合物产品的潜在用途,以延长其现有结构的使用寿命。但是,众所周知的是,由于缺乏有关其耐用性的数据,这些产品的大规模实施通常会受到损害。本文提出了一个实验项目,目的是评估用两种类型的碳纤维增强聚合物(CFRP)从外部增强的钢筋混凝土梁的耐久性。首先将梁暴露于干湿循环或连续浸入水中,然后施加疲劳。最后,在四点弯曲直至失效的情况下对它们进行了准静态测试。此处提供的测试结果提供了关于CFRP加固梁在恶劣环境条件下的潜在长期性能的一些见解。

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