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Behavior and Effectiveness of FRP Wrap in the Confinement of Large Concrete Cylinders

机译:FRP包裹在大型混凝土圆筒内的行为和有效性

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This paper presents the results of an experimental investigation on the strength and behavior of large 250 mm diameter concentrically loaded unreinforced fiber-reinforced polymer (FRP) confined concrete cylinders. In this study, the effect of the number of layers of the FRP and different overlap locations on the effectiveness of the FRP wrap is determined. Discontinuous versus continuous wrapping configurations to confine the cylinder are also investigated. To quantify the level of strain in the wrap and to aid in developing a deeper understanding of the behavior of these larger sized test specimens, an extensive array of electrical resistance strain gauges is used in addition to electronic speckle pattern interferometry (ESPI) optical measurement at selected locations. The ESPI results prove especially powerful in confirming the existence of strain concentrations at the ends of the overlap region, which may contribute to rupture failure of the wrap. The strain gauges in turn enable the effectiveness of the FRP to be quantified in addition to the distribution of hoop strain in the overlap and nonoverlap regions. Also of interest in these tests is identification of the occurrence of interfacial failure between the FRP and concrete at the FRP rupture failure position. Finally, the test results are found to correlate reasonably well with the ACI 440.2R-08 predictions for FRP-confined concrete columns.
机译:本文介绍了对直径250 mm的大直径同心加载的非增强纤维增强聚合物(FRP)约束混凝土圆柱体的强度和性能进行实验研究的结果。在这项研究中,确定了FRP的层数和不同的重叠位置对FRP包装效果的影响。还研究了不连续与连续包裹构造来限制圆柱体。为了量化包装中的应变水平,并有助于加深对这些较大尺寸试样的性能的了解,除了在电子散斑图干涉法(ESPI)光学测量外,还使用了广泛的电阻应变仪阵列。选择的位置。 ESPI结果证明在确认重叠区域末端是否存在应变集中方面特别有力,这可能会导致包装材料破裂。除了在重叠和非重叠区域中的环向应变分布之外,应变仪还可以量化FRP的有效性。在这些测试中,另一个有趣的问题是确定在FRP断裂破坏位置处FRP与混凝土之间的界面破坏的发生。最后,发现测试结果与FCI约束混凝土柱的ACI 440.2R-08预测合理相关。

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