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首页> 外文期刊>Journal of structural engineering >Investigation of the Influence of the Application Path of Confining Pressure: Tests on Actively Confined and FRP-Confined Concretes
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Investigation of the Influence of the Application Path of Confining Pressure: Tests on Actively Confined and FRP-Confined Concretes

机译:密闭压力施加路径的影响研究:对活动密闭和FRP密实混凝土的测试

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It is often assumed that, at a given lateral strain, the axial compressive stress and strain of fiber reinforced polymer (FRP)-confined concrete are the same as those of the same concrete when it is actively confined under a confining pressure equal to that supplied by the FRP jacket. An experimental program was undertaken to assess the validity of this assumption, in which 63 actively confined and FRP-confined normal-strength (NSC) and high-strength concrete (HSC) specimens were tested under axial compression. The axial stress-strain and lateral strain-axial strain curves obtained from the two different confinement systems were assessed. The results indicate that, at a given axial strain, lateral strains of actively confined and FRP-confined concretes correspond when they are subjected to the same lateral confining pressure. At the points of intersection on the lateral strain-axial strain curves, FRP-confined NSC exhibits only slightly lower axial compressive stresses compared with those of actively confined NSC. Conversely, the difference between the axial stresses of actively confined and FRP-confined HSC is found to be significant, indicating that the compressive behavior of confined HSC is more sensitive to the application path of confining pressure than the behavior of confined NSC. By using the combined results of the present study and two comprehensive experimental data-bases of actively confined and FRP-confined concretes, an expression has been developed for the prediction of the difference in the confining pressures that results in differences in the axial stresses between actively confined and FRP-confined concretes. (C) 2014 American Society of Civil Engineers.
机译:通常认为,在给定的横向应变下,纤维增强聚合物(FRP)约束混凝土的轴向压缩应力和应变与相同混凝土在相同的约束压力下主动约束时的轴向压缩应力和应变相同。玻璃纤维外套。进行了一个实验程序,以评估该假设的有效性,其中63个活动约束和FRP约束的正强度(NSC)和高强度混凝土(HSC)标本在轴向压缩下进行了测试。评估了从两个不同的约束系统获得的轴向应力-应变曲线和横向应变-轴向应变曲线。结果表明,在给定的轴向应变下,主动约束和FRP约束混凝土在承受相同横向约束压力时的横向应变相对应。在横向应变-轴向应变曲线的交点处,与主动约束的NSC相比,FRP约束的NSC仅表现出稍低的轴向压缩应力。相反,发现主动约束和FRP约束的HSC的轴向应力之间的差异是显着的,这表明约束HSC的压缩行为比约束NSC的行为对约束压力的施加路径更为敏感。通过使用本研究的结果和两个主动约束和FRP约束混凝土的综合实验数据库,已经开发了一种表达式,用于预测约束压力的差异,从而导致主动约束混凝土之间的轴向应力差异。密实和FRP密实的混凝土。 (C)2014年美国土木工程师学会。

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