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Concrete cracking and deflection analysis of RC beams strengthened with prestressed FRP reinforcements under external load action

机译:基于外部载荷动作预应力FRP增强强化RC梁的混凝土裂缝和挠度分析

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摘要

Fibre reinforced polymer (FRP) reinforcements (laminates, sheets, strips, rods) are considered for retrofitting of RC structures worldwide. Such reinforcements are light, easy to install, corrosion resistant, satisfying aesthetical and design requirements. In order to use full potential of the FRP it should be pretensioned, this way reducing crack widths and deflections. In most cases in practice strengthening will be carried out for structures exposed to external load with initial cracks and deflection. However, there is the lack of experimental and theoretical research of such phenomena when RC structure is strengthened with prestressed FRP reinforcements under external load action. Therefore, here will be presented experimental program for the full analysis of this phenomena. 14 identical RC beams were casted and tested at the courtesy of Vilnius Gediminas Technical University (VGTU): 2 control RC beams, 6 beams strengthened with prestressed carbon fibre reinforced polymer (CFRP) laminates without external load action, 6 beams - under external load action. Different prestressing levels were used in both cases: 17 divided by 56% from the nominal load bearing capacity of FRP. Based on the results theoretical models for calculation are being presented for consideration.
机译:纤维增强聚合物(FRP)增强(层压板,片材,条带,棒)被认为是在全球范围内改装RC结构的改造。这种增强剂是轻盈,易于安装,耐腐蚀,满足美学和设计要求。为了使用FRP的全部潜力,应该是预紧的,这种方式还原裂缝宽度和偏转。在大多数情况下,在实践中,将对暴露于外部载荷的结构进行强化,其具有初始裂缝和偏转。然而,当外部载荷作用下预应力的FRP增强剂加强RC结构时,缺乏对这种现象的实验和理论研究。因此,将在此提出实验计划,以完全分析这种现象。 14个相同的RC梁被铸造和测试在维尔纽斯吉米米斯技术大学(VGTU)提供:2控制RC梁,6个光束加强预应力碳纤维增强聚合物(CFRP)层压板,没有外部载荷作用,6梁 - 在外部负荷作用下。两种情况下使用不同的预应力水平:17除以FRP的标称承载能力为56%。基于结果,介绍了计算的理论模型供考虑。

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