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Cyclic loading tests of RC columns strengthened with high ductile fiber reinforced concrete jacket

机译:高延性纤维增强混凝土外套钢筋混凝土柱的循环荷载试验。

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High ductile fiber reinforced concrete (HDC) is characterized by its tensile strain-hardening behavior and high compressive strain ability. This paper investigates the seismic performance of reinforced concrete (RC) columns strengthened with HDC jacket, eight RC columns were designed and six of them were strengthened with HDC jacket or bar mesh reinforced mortar (BMRM) jacket. The influence of jacketing schemes and axial load ratio on the failure modes, hysteresis loops, skeleton curves, deformation capacity and energy dissipation capacity is analyzed respectively. The experimental results from lateral cyclic loading tests on the specimens show that the failure mode of the columns could be changed from brittle to ductile under the confinement effect of the HDC jackets. The HDC jacket without bar mesh was certified to be more effective than the BMRM jacket in improving the plastic deformation capacity of the original columns. The HDC jacket with bar mesh is the best strengthening scheme, the columns jacketed by which exhibited tremendously enhancement in drift capacity and energy dissipation capacity by developing plastic hinges in the column foot even when the column was under high axial load ratio. (C) 2017 Published by Elsevier Ltd.
机译:高延展性纤维增强混凝土(HDC)具有拉伸应变硬化性能和高压缩应变能力的特点。本文研究了采用HDC夹层加固的钢筋混凝土(RC)柱的抗震性能,设计了8根RC柱,其中6根采用HDC夹层或钢筋网加固砂浆(BMRM)夹层进行了加固。分别分析了夹套方案和轴向载荷比对破坏模式,磁滞回线,骨架曲线,变形能力和能量耗散能力的影响。试样的横向循环荷载试验的实验结果表明,在HDC夹套的约束作用下,圆柱的破坏模式可以从脆性变为延性。经认证,无钢筋网的HDC护套在改善原始色谱柱的塑性变形能力方面比BMRM护套更有效。带有钢筋网的HDC护套是最好的加固方案,即使在高轴向载荷比的情况下,通过在柱脚中开发塑料铰链,带护套的柱也能显着提高漂移能力和能量耗散能力。 (C)2017由Elsevier Ltd.发布

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