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首页> 外文期刊>Advances in civil engineering >Stiffness Analysis of Recycled Self-Compacting Concrete-Filled Circular Steel Tubular Columns under Eccentric Compression
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Stiffness Analysis of Recycled Self-Compacting Concrete-Filled Circular Steel Tubular Columns under Eccentric Compression

机译:偏心压缩下再生自压实混凝土填充圆形钢管柱的刚度分析

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摘要

In this study, twenty-one recycled self-compacting concrete-filled circular steel tubular (RSCFCST) columns are designed and tested under eccentric compression. The studied parameters including the replacement ratio of the recycled coarse aggregate (RCA), strength grade of concrete, eccentricity, and length-diameter ratio L/D of specimens are considered. The load-stiffness curves of the specimens are obtained by observing the whole process of loading, and the effects of various parameters on the stiffness of the specimens are analyzed. Test results demonstrate that the RSCFCST short columns L/D = 4 under eccentric compression exhibit drum-like bending failures, while the RSCFCST long columns L/D4 under eccentric compression experience the global flexural buckling failure modes. With the replacement ratio of RCA, the length-diameter ratio or eccentricity increases, and the bearing capacity of specimens under eccentric compression decreases. However, the increase in the strength grade of concrete increases the bearing capacity. The stiffness of the RSCFCST columns under eccentric compression gradually increases as the strength grade of concrete increases, while the eccentricity had an adverse effect on stiffness of specimen. With the increase of load, the increase of the length-diameter ratio would accelerate the stiffness degradation of specimen. The effect of the replacement ratio of RCA on stiffness of specimen in the elastic stage is not obvious. A validated FE model is employed to conduct parametric studies to widen the available test results. Additionally, an analytical model for predicting the effective stiffness of the RSCFCST columns under eccentric compression is proposed based on the moment magnifier method, and verification of this method is performed using the test data and FE analysis.
机译:在本研究中,在偏心压缩下设计和测试了二十一循环的自压式混凝土填充圆形钢管(RSCFCST)柱。考虑了包括再循环粗骨料(RCA),混凝土强度,偏心和长度直径比例L / D的替代比的研究参数。通过观察整个装载过程获得样品的负载刚度曲线,分析了各种参数对样品刚度的影响。测试结果表明,偏心压缩下的RSCFCST短柱L / D <= 4表现出滚筒状弯曲故障,而RSCFCST长柱L / D> 4在偏心压缩下的40件体验全局弯曲屈曲失效模式。随着RCA的替代比,长度直径比或偏心率增加,并且在偏心压缩下标本的承载力降低。然而,混凝土强度等级的增加会增加承载力。随着混凝土强度等级的增加,偏心压缩下RSCFCST柱的刚度逐渐增加,而偏心率对样本的刚度产生不利影响。随着载荷的增加,长度直径比的增加将加速样品的刚度降解。 RCA替代比对弹性级标本刚度的影响并不明显。验证的FE模型用于进行参数研究以扩大可用的测试结果。另外,基于机芯放大镜方法提出了一种用于预测RSCFCST柱的有效刚度的分析模型,使用测试数据和FE分析来执行该方法的验证。

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  • 来源
    《Advances in civil engineering》 |2019年第9期|2749587.1-2749587.15|共15页
  • 作者单位

    Anhui Univ Technol Dept Civil Engn & Architecture Maanshan 243032 Peoples R China;

    Anhui Univ Technol Dept Civil Engn & Architecture Maanshan 243032 Peoples R China;

    Anhui Univ Technol Dept Civil Engn & Architecture Maanshan 243032 Peoples R China;

    Anhui Univ Technol Dept Civil Engn & Architecture Maanshan 243032 Peoples R China;

    Anhui Univ Technol Dept Civil Engn & Architecture Maanshan 243032 Peoples R China;

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