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Experimental studies and theoretical models for concrete columns confined with FRP composites: a review

机译:用FRP复合材料混凝土柱的实验研究和理论模型:综述

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Purpose - Advanced fibre-reinforced polymer (FRP) composites have been increasingly used over the past two decades for strengthening, upgrading and restoring degraded civil engineering infrastructure. Substantial experimental investigations have been conducted in recent years to understand the compressive behaviour of FRP-confined concrete columns. A considerable number of confinement models to predict the compressive behaviour of FRP-strengthened concrete columns have been developed from the results of these experimental investigations. The purpose of this paper is to present a comprehensive review of experimental investigations and theoretical models of circular and non-circular concrete columns confined with FRP reinforcement. Design/methodology/approach - The paper reviews previous experimental test results on circular and non-circular concrete columns confined with FRP reinforcement under concentric and eccentric loading conditions and highlights the behaviour and mechanics of FRP confinement in these columns. The paper also reviews existing confinement models for concrete columns confined with FRP composites in both circular and non-circular sections. Findings - This paper demonstrates that the performance and effectiveness of FRP confinement in concrete columns have been extensively investigated and proven effective in enhancing the structural performance and ductility of strengthened columns. The strength and ductility enhancement depend on the number of FRP layers, concrete compressive strength, comer radius for non-circular columns and intensity of load eccentricity for eccentrically loaded columns. The impact of existing theoretical models and directions for future research are also presented. Originality/value - Potential researchers will gain insight into existing experimental and theoretical studies and future research directions.
机译:目的 - 在过去二十年中,先进的纤维增强聚合物(FRP)复合材料已越来越多地使用,以加强,升级和恢复降级的土木工程基础设施。近年来进行了实质性的实验研究,了解FRP限制混凝土柱的压缩行为。从这些实验研究的结果开发了预测FRP加强的混凝土柱的压缩行为的相当数量的限制模型。本文的目的是对圆形和非圆形混凝土柱的实验研究和理论模型进行全面审查,局限于FRP加固。设计/方法/方法 - 纸质综合评论以前在同心和偏心装载条件下局限于FRP加固的圆形和非圆形混凝土柱上的实验测试结果,并突出了这些柱子中FRP限制的行为和力学。本文还审查了循环和非圆形部分中围绕FRP复合材料限制的混凝土柱的现有监禁模型。结果 - 本文表明,在混凝土柱中的FRP限制的性能和有效性得到了广泛的调查,并证明有效提高加强柱的结构性性能和延展性。强度和延展性提高取决于FRP层的数量,混凝土抗压强度,用于非圆柱的COMER半径和偏心加载柱的负载偏心强度。还提出了现有理论模型和方向对未来研究的影响。原创性/价值 - 潜在的研究人员将深入了解现有的实验和理论研究和未来的研究方向。

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