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Compressive behavior of axially loaded circular hollow concrete columns reinforced with GFRP bars and spirals

机译:GFRP筋和螺旋增强的轴向受压圆形空心混凝土柱的抗压性能。

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This study explored the use glass-fiber-reinforced-polymer (GFRP) bars and spirals as reinforcing materials in hollow concrete columns in order to mitigate steel-related corrosion problems and understand the fundamental behavior of such construction system under the applied loads. Four concrete columns 250 mm in external diameter and reinforced longitudinally with six 15.9 mm diameter GFRP bars were cast with different inner diameters (0, 40, 65, and 90 mm) and tested under concentric axial loading. Based on the experimental results, increasing the inner-to-outer diameter ratio up to 0.36 in hollow GFRP reinforced columns changed the failure behavior from brittle to pseudo-ductile. Moreover, the hollow GFRP reinforced columns exhibited higher deformation capacity and higher confinement efficiency compared to the GFRP-reinforced solid columns and steel-reinforced hollow columns. A theoretical model considering the confined-concrete compressive strength and axial strain of 0.0025 in longitudinal GFRP bars can accurately predict the axial-load capacity of hollow concrete columns. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究探索了在空心混凝土柱中使用玻璃纤维增​​强聚合物(GFRP)钢筋和螺旋作为增强材料,以减轻与钢有关的腐蚀问题,并了解这种建筑系统在施加载荷下的基本性能。浇铸四根外径为250 mm的混凝土柱,并用六根15.9 mm直径的GFRP筋纵向加固,以不同的内径(0、40、65和90 mm)浇铸并在同心轴向载荷下进行测试。根据实验结果,将空心GFRP增强柱的内外径比提高到0.36,可以将破坏行为从脆性变为拟延性。此外,与GFRP加固的实心柱和钢加固的空心柱相比,空心GFRP加固柱具有更高的变形能力和更高的约束效率。考虑纵向GFRP钢筋的极限混凝土抗压强度和0.0025的轴向应变的理论模型可以准确地预测空心混凝土柱的轴向承载能力。 (C)2018 Elsevier Ltd.保留所有权利。

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