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Behaviour of eccentric loading of FRP confined fibre steel reinforced concrete columns

机译:FRP约束钢纤维混凝土柱的偏心荷载作用

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摘要

This paper presents results of testing 16 specimens, 12 of which as columns under different eccentricitiesand four as beams under four point loading regime. All 16 specimens were circular in cross section andwere made of reinforced concrete. Four specimens served as reference specimens and were just made ofreinforced concrete. The next four specimens were wrapped with carbon fibre reinforced polymers(CFRP). The next four specimens had steel fibres added to the concrete. The final four specimens werereinforced with steel fibres and wrapped with CFRP. From each group of specimens, one specimen wastested as a column under a concentric load, the second specimen was tested as a column under25 mm eccentricity, the third specimen was tested as a column under 50 mm eccentricity, and the finalspecimen was tested as a beam under four point loading regime. The experimental programme provedthat the introduction of fibres as well as wrapping the specimens with FRP improve the properties of concrete,especially its ductility.
机译:本文介绍了测试16个试样的结果,其中12个是在不同偏心率下的圆柱,四个是在四点荷载制度下的梁。所有16个样品的横截面均为圆形,由钢筋混凝土制成。四个样本用作参考样本,只是由钢筋混凝土制成。接下来的四个样本被碳纤维增强聚合物(CFRP)包裹。接下来的四个样本已将钢纤维添加到混凝土中。最后的四个试样用钢纤维增强并用CFRP包裹。从每组样品中,将一个样品在同心载荷下作为柱进行测试,将第二个样品作为在25 mm偏心率下的柱进行测试,将第三个样品作为在50 mm偏心率下的柱进行测试,并将最终样品作为梁进行测试在四点加载机制下。实验程序证明,引入纤维以及用FRP包裹试样可以改善混凝土的性能,特别是延展性。

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  • 作者

    Hadi, Muhammad N. S;

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  • 年度 2009
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