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PET FRP-concrete-high strength steel hybrid solid columns with strain-hardening and ductile performance: Cyclic axial compressive behavior

机译:具有应变硬化和延展性能的PET FRP-混凝土-高强度钢混合实心柱:循环轴向压缩行为

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This paper presents the results of an experimental program on the behavior of fiber-reinforced polymer (FRP)-concrete-high strength steel solid columns (FCSSCs), with an outer polyethylene terephthalate (PET) FRP tube and an inner circular high-strength steel (HSS) tube, under cyclic axial compression. A PET FRP tube has a much larger rupture strain and a larger FRP hoop strain efficiency, leading to an excellent ductility of PET FRP-confined concrete. The HSS tube, which has a good deformation compatibility with the PET FRP-confined concrete in FCSSCs, provides a much larger longitudinal load carrying capacity and a larger confinement to the core concrete compared with a normal strength steel tube. The experimental results demonstrated that the axial load carrying capacity of an FCSSC is much larger than the summation of the axial load resistance of the hollow steel tube and that of the concrete-filled FRP tube; the buckling of the HSS tube is also prevented so that its post-yield material strength is effectively utilized. It is found that cyclic load-strain envelope curves lie closely to the corresponding monotonic load-strain curves, and repeated loading cycles increase the plastic strain while decrease the reloading new stress. The existing stress-strain model fails to provide an accurate prediction on the cyclic axial behavior of concrete under combined PET FRP-steel confinement.
机译:本文介绍了使用纤维增强聚合物(FRP)-混凝土-高强度钢实心柱(FCSSC),外层聚对苯二甲酸乙二醇酯(PET)FRP管和内层圆形高强度钢的性能的实验程序的结果(HSS)管,承受循环轴向压缩。 PET FRP管具有更大的断裂应变和更大的FRP箍应变效率,从而使PET FRP约束的混凝土具有出色的延展性。 HSS管与FCSSC中的PET FRP约束混凝土具有良好的变形相容性,与普通强度钢管相比,它具有更大的纵向承载能力和对核心混凝土的更大约束。实验结果表明,FCSSC的轴向承载能力远大于空心钢管和混凝土FRP管的轴向承载力之和。 HSS管的屈曲也得到了防止,从而有效地利用了其屈服后的材料强度。研究发现,循环荷载-应变包络线与相应的单调荷载-应变曲线密切相关,重复的荷载循环增加了塑性应变,同时减小了重新加载新应力。现有的应力-应变模型无法对PET FRP-钢组合约束下混凝土的循环轴向行为提供准确的预测。

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