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Analysis of Debonding Failure Modes in FRP-Strengthened Reinforced Concrete Beams Using Genetic Algorithms

机译:使用遗传算法分析FRP加强钢筋混凝土梁的剥离失效模式

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The use of fibre reinforced polymer (FRP) composite materials for flexural strengthening of reinforced concrete (RC) structures is increasingly becoming a robust alternative to traditional techniques. Numerous numerical models have been proposed for estimating the increase of the flexural capacity, assessing the transmission of forces through the interface between the concrete and the FRP and describing the possible failure modes that can happen. Several of these models have been simplified in order to make them formulated into guidelines. Although they have not reached standard status yet, they are useful recommendations to be followed for repairing or retrofitting RC structures. This paper describes the main features of the following guidelines: the European "fib Bulletin 14", the British Technical Report 55 and North American ACI 440.2R. Differences between them are discussed and a practical comparison is illustrated through a flexural strengthening problem that is solved through a structural optimization application based on Genetic Algorithms.
机译:使用纤维增强聚合物(FRP)复合材料用于钢筋混凝土(RC)结构的弯曲强化越来越多地成为传统技术的强大替代品。已经提出了许多数值模型来估计弯曲能力的增加,通过混凝土和FRP之间的界面来评估力的传播,并描述可能发生的可能发生故障模式。已经简化了几种这些模型,以使其制定为指南。虽然它们尚未达到标准状态,但它们是修理或改造RC结构的有用建议。本文介绍了以下准则的主要特点:欧洲“FIB Bulletin 14”,英国技术报告55和北美ACI 440.2R。讨论它们之间的差异,并且通过基于遗传算法的结构优化应用解决的弯曲强化问题来说明实际比较。

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