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Seismic retrofit of shear-critical reinforced concrete beams using CFRP

机译:碳纤维布加固抗剪临界钢筋混凝土梁

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摘要

Ageing infrastructure and improvements to design code shear provisions has led to a situation in which many older structures are now considered structurally deficient and are in need of rehabilitation or retrofit. Many of these structures may be at risk of catastrophic failure if their shear-critical components fail in a brittle manner, which could be induced during an earthquake or due to overloading. An effective method for upgrading these shear-critical components is by applying externally bonded fibre reinforced polymers (FRP), which have been shown to significantly enhance shear strength. However, current design codes (ACI 440.2R-08, CSA S6-06) fail to accurately predict strength improvements and have yet to be verified with large-scale beams or those subjected to cyclic loading. As such, large-scale (400 x 650 x 3600 mm) shear-critical reinforced concrete beams were tested under reversed cyclic loading to simulate a seismic event. The beams contained less than design code recommended transverse steel reinforcement for shear and were retrofitted with various FRP wrap configurations. It was found that the FRP retrofits greatly improved shear strength under reversed cyclic loading, attributed to the relatively elastic-like behaviour of the retrofitted specimens. In addition, retrofits with sufficient FRP strengthening to promote flexural yielding were found to improve ductility by reducing post-yield shear strength deterioration.
机译:老化的基础设施和对设计规范剪力规定的改进导致了一种情况,在这种情况下,许多旧结构现在被认为在结构上存在缺陷,需要进行修复或翻新。如果这些结构中的许多关键剪切部件以脆性方式破坏,则其中许多结构可能会遭受灾难性破坏,这可能是在地震期间或由于过载而引起的。升级这些剪切关键组件的有效方法是应用外部粘合的纤维增强聚合物(FRP),该聚合物已显示出可显着提高剪切强度。但是,当前的设计规范(ACI 440.2R-08,CSA S6-06)无法准确预测强度的提高,并且尚未通过大型梁或承受周期性载荷的梁进行验证。因此,在反向循环荷载下对大型(400 x 650 x 3600 mm)抗剪临界钢筋混凝土梁进行了测试,以模拟地震事件。梁的抗剪强度低于设计规范建议的横向钢筋,并用各种FRP缠绕结构进行了改装。结果发现,FRP改型极大地提高了在反向循环载荷下的抗剪强度,这归因于改型标本的相对类似弹性的行为。此外,发现具有足够的FRP强度以增强弯曲屈服的改型可通过减少屈服后的剪切强度降低来改善延展性。

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