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RC members strengthened with externally bonded FRP plates: A FE-based limit analysis approach

机译:RC构件通过外部粘结的FRP板加强:基于有限元的极限分析方法

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摘要

Fiber-reinforced-polymer (FRP) strengthening systems have been increasingly studied and used as an effective strategy to rehabilitate existing reinforced concrete (RC) structures. The present paper addresses the problem of predicting the load-carrying capacity of these strengthened structural elements. To this aim, in the framework of limit analysis a numerical methodology is presented which employs iterative finite element (FE) analyses with adaptive elastic parameters and a multi-yield-criteria formulation. The latter is adopted to appropriately describe the constitutive behaviour of the three main constituent materials, namely: concrete, steel reinforcement bars (re-bars) and strengthening FRP-laminates. The effectiveness of the promoted methodology is verified by comparison between numerical results and experimental findings regarding FRP-plated RC elements. Despite being based on a simplified approach which is affected by the underlying assumptions of limit analysis theory, the numerical procedure may be useful for the assessment of the load-carrying capacity in large RC structures repaired or retrofitted by FRP plates. Potentialities and limitations of the proposed methodology are discussed carefully.
机译:纤维增强聚合物(FRP)增强系统已得到越来越多的研究,并被用作修复现有钢筋混凝土(RC)结构的有效策略。本文解决了预测这些加固结构构件的承载能力的问题。为此,在极限分析的框架内,提出了一种数值方法,该方法采用具有自适应弹性参数和多屈服准则的迭代有限元分析。后者被用来适当地描述三种主要构成材料的本构行为,即:混凝土,钢筋(重钢筋)和强化FRP层压板。通过比较数值结果和有关FRP镀RC元件的实验结果,验证了所提方法的有效性。尽管基于简化方法,该方法受极限分析理论的基本假设影响,但数值程序可能对评估由FRP板修复或翻新的大型RC结构的承载能力有用。仔细讨论了所提出方法的潜力和局限性。

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