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首页> 外文期刊>Journal of Constructional Steel Research >Buckling behaviour of high strength concrete encased steel composite columns
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Buckling behaviour of high strength concrete encased steel composite columns

机译:高强度混凝土包裹钢组合柱的屈曲性能

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This paper provides an insight into the buckling behavior of high strength concrete encased steel (CES) columns through a comprehensive investigation including experimental, numerical and analytical analyses. Three long CES column specimens made of high strength concrete C100 and S355 H-section were tested under axial compression. The maximum test loads obtained from these tests were compared with the buckling resistance predicted by EN 1994-1-1, AISC 360-10 and ACI 318-08. Nonlinear finite element analyses were performed to predict the buckling resistance and trace the load displacement behaviour of these columns. In the finite element model, the column initial imperfections were carefully chosen to predict the maximum resistance and the load-displacement response, and compared with the equivalent imperfection values stipulated in the modern design codes. In order to examine the validity and limitation of the current design approaches in predicting the buckling resistance of CES columns made of high strength concrete, a statistical study was undertaken based on the established database covering a wider range of material strength and geometric configurations. In the statistical study, the buckling resistance and effective flexural stiffness obtained from the tests were compared with the codes' predictions from EN 1994-1-1, AISC 360-10 and ACI 318-08. Finally, the reliability of the current design methods is assessed by correlating their accuracy with respect to the variation of material strength, column slenderness ratio, load eccentricity and steel contribution ratio. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文通过全面的研究,包括实验,数值和分析分析,提供了对高强度混凝土包裹钢(CES)柱的屈曲性能的见解。在轴向压缩下测试了三个由高强度混凝土C100和S355 H型材制成的CES长柱试样。将这些测试获得的最大测试负载与EN 1994-1-1,AISC 360-10和ACI 318-08预测的屈曲阻力进行比较。进行了非线性有限元分析,以预测屈曲阻力并跟踪这些柱的荷载位移行为。在有限元模型中,精心选择了柱的初始缺陷,以预测最大阻力和载荷-位移响应,并将其与现代设计规范中规定的等效缺陷值进行比较。为了检验当前设计方法在预测由高强度混凝土制成的CES柱的抗屈曲性方面的有效性和局限性,基于已建立的数据库进行了统计研究,该数据库涵盖了更广泛的材料强度和几何构型。在统计研究中,将从测试中获得的屈曲强度和有效抗弯刚度与EN 1994-1-1,AISC 360-10和ACI 318-08中的规范预测进行了比较。最后,通过将当前设计方法的准确性与材料强度,柱长细比,载荷偏心率和钢贡献率的变化相关联来评估其可靠性。 (C)2018 Elsevier Ltd.保留所有权利。

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