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Investigation of the Ultimate Capacity of NSM FRP-Strengthened Concrete Bridge Deck Slabs

机译:NSM FRP增强混凝土桥面板的极限承载力研究

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摘要

The use of near-surface-mounted (NSM) fibre-reinforced polymer (FRP) is a promising technology for increasing ultimate strength of concrete structures. However, the application of this strengthening method in concrete deck slabs is rather limited. This paper reveals a study of the ultimate capacity of concrete bridge deck slabs strengthened with NSM FRP rods. An experimental investigation on concrete deck specimens was carried out to identify the effect of NSM strengthening method on the failure mode and loading carrying capacity. The test results show that this strengthening procedure can increase the effective punching depth and enhance the punching capacity of concrete deck slabs. Interestingly, the NSM FRP strengthening strategy combined with arching action has a cumulative beneficial effect on the ultimate strength. Additionally, the ultimate strength of the test deck slabs was predicted by theoretical models reported in some reported studies. It is found that those methods yield highly conservative predictions. Subsequently, a modified theoretical model that takes into account of arching action is proposed. By validating the predicted strengths with the test results, the proposed method accurately predicted the ultimate strength of bridge deck slabs strengthened using NSM FRP.
机译:近表面贴装(NSM)纤维增强聚合物(FRP)的使用是增加混凝土结构极限强度的有前途的技术。但是,这种加固方法在混凝土面板中的应用受到很大限制。本文揭示了对使用NSM FRP杆加固的混凝土桥面板的极限承载力的研究。进行了混凝土甲板标本的实验研究,以确定NSM加固方法对破坏模式和承载能力的影响。试验结果表明,该加固工艺可以增加有效冲孔深度,增强混凝土面板的冲孔能力。有趣的是,结合了拱形作用的NSM FRP强化策略对最终强度产生了累积的有益影响。另外,通过一些报道的研究报告的理论模型预测了试验甲板平板的极限强度。发现这些方法产生高度保守的预测。随后,提出了一种考虑拱起作用的改进的理论模型。通过用测试结果验证预测强度,该方法可准确预测使用NSM FRP加固的桥面板的极限强度。

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