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Comparison of CFRP and Alternative Seismic Retrofitting Techniques for Bare and Infilled RC Frames

机译:裸钢筋混凝土框架和填充钢筋混凝土框架的CFRP和其他抗震加固技术的比较

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摘要

The opportunities provided by the use of modern repair schemes for the seismic retrofit of existing RC structures were assessed on a comparative experimental study of carbon fiber-reinforced polymer (CFRP) and more-conventional seismic retrofitting techniques for the repair of reinforced concrete members and masonry walls of bare and infilled RC frames, respectively, damaged because of cyclic loading. Four 1-story, one-bay, one-third-scale frame specimens are tested under cyclic horizontal loading up to a drift level of 4%—two bare frames with spirals or stirrups as shear reinforcement, respectively, and two infilled frames with weak infills and spirals or stirrups as shear reinforcement, respectively. The applied repair techniques are mainly based on the use of thin epoxy resin infused under pressure into the crack system of the damaged RC joint bodies or on the additional use of CFRP plates to the surfaces of the damaged structural RC members as external reinforcement and the use of a polymer modified cement mortar or two-sided diagonal CFRP fabrics for the damaged infill masonry walls. After repair, specimens were retested in the same way. Conclusions concerning the comparison of the effectiveness between conventional and CFRP seismic retrofitting applied techniques on the basis of maximum cycles load, loading stiffness, and hysteretic energy absorption capabilities of the tested specimens are drawn.
机译:通过对碳纤维增强聚合物(CFRP)和更常规的地震加固技术来维修钢筋混凝土构件和砖石的对比实验研究,评估了使用现代维修方案对现有RC结构进行地震加固的机会裸露的RC框架和填充的RC框架的壁分别由于循环载荷而损坏。对四个1层,一槽,三分之一比例的框架标本进行周期性水平载荷测试,其漂移水平最高为4%-两个裸框架分别使用螺旋形或箍筋作为抗剪加固,而两个填充框架的强度较弱。填充物和螺旋或箍筋分别作为抗剪钢筋。应用的修复技术主要是基于在压力下将环氧树脂注入到受损的RC接头体的裂缝系统中,或者将CFRP板额外用于受损的RC构件表面作为外部加固,以及使用聚合物改性水泥砂浆或双面对角CFRP织物用于损坏的填充砌体墙。维修后,以相同的方式对样品进行重新测试。得出了关于在最大循环载荷,载荷刚度和被测样品的滞回能量吸收能力的基础上,将常规技术与CFRP地震改型应用技术进行有效性比较的结论。

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