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Performance of axially restrained concrete encased steel composite columns at elevated temperatures

机译:轴向约束混凝土包裹钢组合柱在高温下的性能

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The structural performance of axially restrained concrete encased steel composite columns at elevated temperatures is investigated in this study. An efficient nonlinear 3-D finite element model was presented for the analysis of the pin-ended axially loaded columns. The restraint ratios varied from 20% to 100% of the axial stiffness of the composite columns at ambient temperature. The finite element model was verified against published test results on axially restrained concrete encased steel composite columns at elevated temperatures. The columns investigated had different cross-sectional dimensions, different coarse aggregates and different load ratios during fire. The nonlinear material properties of steel, concrete, longitudinal and transverse reinforcement bars as well as the effect of concrete confinement at ambient and elevated temperatures were considered in the finite element model. The interface between the steel section and concrete, the longitudinal and transverse reinforcement bars, and the reinforcement bars and concrete were also considered allowing the bond behaviour to be modelled and the different components to retain its profile during the deformation of the column. The initial overall geometric imperfection was carefully included in the model. The time-temperature relationships, deformed shapes at failure, time-axial displacement relationships, failure modes and fire resistances of the columns were evaluated by the finite element model and compared well against test results. Furthermore, the variables that influence the fire resistance and behaviour of the axially restrained composite columns comprising different axial restraint ratios, different load ratios during fire, different coarse aggregates and different slenderness ratios were investigated in a parametric study. It is shown that axially restrained composite columns behave differently in fire compared to the unrestrained columns since the typical "runaway" failure was not predicted from the finite element analysis. The fire resistances of the composite columns obtained from the finite element analysis were compared with the design values obtained from the Eurocode 4 for composite columns at elevated temperatures. It is shown that the EC4 is generally conservative for all the axially restrained concrete encased steel composite columns, except for some columns with higher load and slenderness ratios.
机译:本研究研究了轴向约束的混凝土包裹钢组合柱在高温下的结构性能。提出了一种有效的非线性3-D有限元模型,用于分析销端轴向载荷柱。在环境温度下,约束率从复合柱轴向刚度的20%到100%不等。相对于已公开的在高温下轴向约束的混凝土包裹钢组合柱的测试结果验证了有限元模型。所研究的圆柱具有不同的横截面尺寸,不同的粗骨料和着火时的不同负载比。在有限元模型中考虑了钢,混凝土,纵向和横向钢筋的非线性材料特性,以及在环境和高温下混凝土的约束作用。还考虑了钢截面和混凝土,纵向和横向钢筋以及钢筋和混凝土之间的界面,从而可以对粘结行为进行建模,并使不同的组件在柱变形期间保持其轮廓。最初的整体几何缺陷已仔细地包含在模型中。通过有限元模型评估了柱子的时温关系,破坏时的变形形状,时轴位移关系,破坏模式和耐火性,并将其与试验结果进行了比较。此外,在参数研究中,研究了影响轴向约束复合柱的抗火性和行为的变量,这些约束包括不同的轴向约束比,不同的火灾荷载率,不同的粗骨料和不同的细长比。结果表明,与无约束柱相比,轴向约束复合柱在火灾中的行为有所不同,因为典型的“失控”破坏无法通过有限元分析来预测。将通过有限元分析获得的复合柱的耐火性与通过Eurocode 4获得的复合柱在高温下的设计值进行比较。结果表明,对于所有轴向约束混凝土包裹的钢复合柱,EC4通常是保守的,除了一些具有较高载荷和细长比的柱。

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