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首页> 外文期刊>International journal of steel structures >Experimental Study and Confinement Analysis on RC Stub Columns Strengthened with Circular CFST Under Axial Load
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Experimental Study and Confinement Analysis on RC Stub Columns Strengthened with Circular CFST Under Axial Load

机译:圆形CFST加固RC短柱轴心受压的试验研究与约束分析。

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摘要

As the excellent mechanical performance and easy construction of concrete filled steel tubes (CFST) composite structure, it has the potential to be used to strengthen RC pier columns. Therefore, tests were conducted on 2 reinforcement concrete (RC) stub columns and 9 RC columns strengthened with circular CFST under axial loading. The test results show that the circular CFST strengthening method is effective since the mean bearing capacity of the RC columns is increased at least 3.69 times and the ductility index is significantly improved more than 30%. One of the reasons for enhancement is obvious confinement provided by steel tube besides the additional bearing capacity supplied by the strengthening materials. From the analysis of the enhancement ratio, the strengthening structure has at least an extra 20% amplification except for taking full advantage of the strength of the strengthening material. Through the analysis of confining stress provided by steel tube and the stress-strain relationship of confined concrete, it is found that the strength of the core concrete can be increased by 21-33% and the ultimate strain can be enhanced to beyond 15,000 epsilon.
机译:由于钢管混凝土(CFST)复合结构的优异机械性能和易于施工,它具有用于加固RC墩柱的潜力。因此,在轴向载荷下,对2根钢筋混凝土(RC)短柱和9根圆形CFST加固的RC柱进行了测试。试验结果表明,圆形CFST加固方法是有效的,因为RC柱的平均承载力至少增加了3.69倍,并且塑性指标明显提高了30%以上。增强的原因之一是钢管提供了明显的约束,除了增强材料提供了额外的承载能力。从增强率的分析来看,除了充分利用增强材料的强度外,增强结构还具有至少20%的额外放大率。通过对钢管施加的约束应力和约束混凝土的应力-应变关系进行分析,发现芯混凝土的强度可以提高21-33%,极限应变可以提高到15,000ε以上。

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