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Behavior of hollow FRP-concrete-steel columns under static cyclic axial compressive loading

机译:空心FRP-混凝土钢柱在静循环轴向压缩荷载下的行为

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This paper presents the behavior of hollow fiber reinforced polymer-concrete-steel (HC-FCS) columns under axial compressive loading. The typical HC-FCS column consists of a concrete shell sandwiched between an outer fiber reinforced polymer (FRP) tube and an inner steel tube. The inner steel and outer FRP tubes provide continuous confinement for the concrete shell; hence, the concrete shell achieves a significantly higher strain, strength, and ductility compared to the unconfined concrete in conventional columns. The HC-FCS column represents a compact engineering system; the steel and FRP tubes act together as stay-in-place formworks. The effect of the fiber orientation and the steel tube diameter-to-thickness ratio (D-i/t(s)) on the compressive behavior of HC-FCS columns was investigated. Ten HC-FCS cylinders with different steel tube D-i/t(s) ratios and three concrete-filled fiber tubes (CFFTs) were manufactured and tested under static cyclic axial compressive loading in addition to three empty steel tubes. The behavior of the HC-FCS columns was complicated and related mainly to the stiffness of the FRP and steel tubes, which controlled the direction of the concrete dilation under axial load. HC-FCS columns with FRP tubes made with fibers oriented at +/- 45 degrees showed low axial compressive strengths and high ultimate strains. HC-FCS columns with wet lay-up FRP tubes that had +/- 45 degrees and 0 degrees (hybrid FRP) exhibited high axial strengths and strains. The failure of the HC-FCS-columns with hybrid FRP tubes consisted of two stages. The first stage was the rupture of the unidirectional FRP tube (outer tube), and the second stage was the reorientation of the oriented FRP tube exhibiting high axial strains. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了空心纤维增强聚合物-混凝土(HC-FCS)柱在轴向压缩载荷下的性能。典型的HC-FCS色谱柱由夹在外部纤维增强聚合物(FRP)管和内部钢管之间的混凝土壳组成。内钢管和外玻璃钢管为混凝土壳体提供连续的约束;因此,与常规柱中的无侧限混凝土相比,混凝土壳体具有显着更高的应变,强度和延展性。 HC-FCS列表示一个紧凑的工程系统;钢管和FRP管一起充当固定模板。研究了纤维取向和钢管直径与厚度比(D-i / t(s))对HC-FCS柱压缩特性的影响。除三个空钢管外,还制造了十个具有不同钢管D-i / t(s)比的HC-FCS气瓶和三个充气混凝土纤维管(CFFT),并在静态循环轴向压缩载荷下进行了测试。 HC-FCS柱的行为很复杂,并且主要与FRP和钢管的刚度有关,后者在轴向载荷下控制了混凝土膨胀的方向。带有FRP管的HC-FCS色谱柱由以+/- 45度定向的纤维制成,显示出较低的轴向抗压强度和较高的极限应变。带有+/- 45度和0度(FRP混合型)湿式FRP管的HC-FCS色谱柱表现出较高的轴向强度和应变。混合FRP管的HC-FCS柱的失效分为两个阶段。第一阶段是单向FRP管(外管)的破裂,第二阶段是对具有高轴向应变的定向FRP管的重新定向。 (C)2016 Elsevier Ltd.保留所有权利。

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