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Axial-flexural interaction in circular FRP-confined reinforced concrete columns

机译:圆形FRP约束钢筋混凝土柱的轴弯相互作用。

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摘要

External confinement by fibre reinforced polymers (FRPs) is now a widely implemented technique to strengthen reinforced concrete (RC) columns. To date, the vast majority of experiments on FRP-confined concrete have considered short, unreinforced, small scale concrete cylinders, with aspect ratios of less than three and tested under concentric axial load. In practice, RC columns invariably have aspect ratios larger than three and are subjected to inadvertent load eccentricities or combined axial-flexural (P-M) loading. Limited available research suggests that the effectiveness of FRP confinement is reduced under P-M loading. This paper presents the results of a systematic test program on circular FRP-confined RC columns of realistic slenderness under eccentric axial loads to study the mechanics and performance of these types of members. Test data are compared against theoretical P-M interaction diagrams, as well as against recently published design guidelines for P-M interaction in FRP-confined RC columns.
机译:现在,纤维增强聚合物(FRP)进行的外部约束是一种广泛实施的技术,用于增强钢筋混凝土(RC)柱。迄今为止,在FRP约束混凝土上进行的绝大多数实验都考虑了短的,无钢筋的小尺寸混凝土圆柱体,其纵横比小于3,并在同心轴向载荷下进行了测试。实际上,RC柱始终具有大于3的纵横比,并且会承受无意的载荷偏心率或组合的轴向弯曲(P-M)载荷。有限的可用研究表明,在P-M载荷下,FRP封闭的有效性降低。本文介绍了在偏心轴向载荷下圆形FRP约束的实际细长细长RC柱的系统测试程序的结果,以研究这些类型的构件的力学和性能。将测试数据与理论P-M相互作用图进行比较,并与FRP约束RC柱中最近发布的P-M相互作用设计指南进行比较。

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