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Seismic Behavior of Substandard RC Columns Retrofitted with Embedded Aramid Fiber Reinforced Polymer (AFRP) Reinforcement

机译:嵌入芳族聚酰胺纤维增强聚合物(AFRP)加固的次标准RC柱的抗震性能

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Many existing reinforced concrete structures were constructed with substandard characteristics. Low quality concrete, poor transverse reinforcement details and insufficient flexural strength are among the most common deficiencies. While substandard structures are in need of retrofitting, particularly in seismic areas, problems such as high costs and disturbance to occupants are major obstacles for retrofit interventions. Fiber reinforced polymers can provide feasible retrofit solutions with minimum disturbance to occupants. In this study, the basic aim is to investigate the flexural seismic performance of substandard reinforced concrete columns retrofitted with embedded longitudinal fiber reinforced polymer reinforcement without increasing the original dimensions of the columns. In the experimental study, the reference and retrofitted columns were tested under constant vertical and reversed cyclic lateral loads. Three different connection methods of aramid fiber reinforced polymer reinforcement to the footing were investigated experimentally. A significant enhancement was obtained in lateral flexural strength through the proposed retrofitting method. Furthermore, it was observed that the cyclic lateral drift capacities of the retrofitted columns were as high as 3%, which can be deemed as quite satisfactory against seismic actions. The comparison of the experimental data with analytical calculations revealed that a conventional design approach assuming composite action between concrete and fiber reinforced polymer reinforcement can be used for flexural retrofit design. Experimental results also demonstrated that strain limit for longitudinal fiber reinforced polymer (FRP) reinforcement should be remarkably lower in case of reversed cyclic loading conditions.
机译:许多现有的钢筋混凝土结构均具有不合格的特征。低质量的混凝土,不良的横向钢筋细节和不足的抗弯强度是最常见的缺陷。尽管需要对不合标准的结构进行翻新,尤其是在地震地区,但诸如高成本和对乘员的干扰之类的问题是翻新干预措施的主要障碍。纤维增强的聚合物可以提供可行的改造解决方案,对乘员的干扰最小。在这项研究中,基本目的是研究在不增加立柱原始尺寸的情况下,用埋置式纵向纤维增强聚合物增强材料改造的次标准钢筋混凝土柱的抗震性能。在实验研究中,参考柱和翻新柱在恒定的竖向和反向循环侧向荷载下进行测试。实验研究了芳纶纤维增强聚合物增强材料与基础的三种不同连接方法。通过提出的改造方法,横向抗弯强度得到了显着提高。此外,观察到,改型后的圆柱体的横向侧移能力高达3%,可以认为在地震作用下非常令人满意。实验数据与分析计算的比较表明,假定混凝土和纤维增强聚合物增强材料之间具有复合作用的常规设计方法可用于抗弯改造设计。实验结果还表明,在反向循环载荷条件下,纵向纤维增强聚合物(FRP)增强材料的应变极限应显着降低。

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