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Modified force method for the nonlinear analysis of FRP reinforced concrete beams

机译:FRP加固混凝土梁非线性分析的修正力法

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摘要

Among the different techniques adopted to retrofit structures that had become inadequate, the use of fiber reinforced composite materials (FRP) has gained more and more popularity for their relevant properties such as high strength to weight ratio and excellent corrosion resistance. However, debonding of FRP lamina from the substrate, made of either concrete or steel, may prevent the achievement of the full load bearing capacity of the reinforced element. In this paper a numerical method, able to follow the complete equilibrium path of a reinforced concrete beam externally strengthened by means of FRP sheets up to the complete detachment of the external reinforcement, is proposed. According to this method, the FRP sheets are separated from the reinforced concrete substructure by displaying the interface stresses that are taken into account by means of the corresponding interface slips (which are the primary unknowns). Compatibility equations are then imposed at the interface in order to restore the behavior of the externally reinforced beam. The method is first validated by benchmarking experimental results taken from literature and then exploited to perform a parametric analysis in order to point out the effect of the main design parameters on the response of the reinforced beam. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在已采用的不足以翻新结构的不同技术中,纤维增强复合材料(FRP)的使用因其相关特性(例如高强度/重量比和出色的耐腐蚀性)而越来越受到欢迎。但是,由混凝土或钢制成的FRP薄片与基材的剥离可能会阻止增强元件的满负荷能力实现。本文提出了一种数值方法,该方法能够遵循通过FRP板从外部进行加固的钢筋混凝土梁的完整平衡路径,直至外部钢筋的完全脱离。根据此方法,通过显示界面应力将FRP板与钢筋混凝土子结构分离,界面应力是通过相应的界面滑移(主要未知数)考虑在内的。然后将相容性方程式强加于界面处,以恢复外部加固梁的性能。首先通过对来自文献的实验结果进行基准测试来验证该方法,然后利用该方法进行参数分析,以指出主要设计参数对增强梁响应的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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