Use of advanced composite materials in strengthening axially loaded reinforced concrete columns

M. Cheikh-Zouaoui , R. Benzaid , N. Chikh , H-A. Mesbah
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Abstract

The present study deals with the analysis of experimental results, regarding of load carrying capacity and strains, obtained from tests on reinforced concrete (RC) columns, strengthened with external carbon fibre reinforced polymer (CFRP) sheets. The experimental parameters include: number of wrap layers, slenderness of the columns (L/a or L/D) and section geometry (circular or square). A total of 48 specimens were subjected to axial compression. All test specimens were loaded to failure. Compressive stress, both axial and hoop strains have been recorded to evaluate the stress-strain relationship, ultimate stress, stiffness, and ductility. First, the effects of test parameters are analysed and compared. Results clearly demonstrate that composite wrapping can enhance the structural performance of RC columns in terms of both maximum strength and ductility.

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采用先进复合材料加固钢筋混凝土轴向受压柱
本研究分析了用外部碳纤维增强聚合物(CFRP)薄板加固的钢筋混凝土(RC)柱的承载能力和应变试验结果。实验参数包括:包层数、柱长细度(L/a或L/D)和截面几何形状(圆形或方形)。共48个试件进行轴压试验。所有试件均加载至失效状态。压应力,轴向和环向应变均已记录,以评估应力-应变关系,极限应力,刚度和延性。首先,对试验参数的影响进行了分析比较。结果表明,复合包裹层在最大强度和延性方面均能提高混凝土柱的结构性能。
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