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Analysis of axially loaded concrete filled circular hollow double steel tubular columns exposed to fire

机译:火灾下圆形空心钢管混凝土轴压火灾的分析。

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摘要

A series of new unified design formulas for calculating the temperature field and fire resistance tinder axial compressive loading of a circular solid or hollow concrete filled double steel tubular (CFDST) short and slender columns exposed to fire are presented in this paper. The results of the experiments are firstly derived from exploring the fundamental behavior of the CFSDT slender columns under the ISO 834 standard fire and temperature distributions. Failure modes and axial deformation versus time curves are also obtained and discussed. It was realized that a solid or slender CFDST column has different temperature fields, stronger limiting temperature and better fire resistance, as compared to columns filled with plain concrete. Also, the load ratio and steel ratio have no evident difference between the results of the solid and hollow CFDST columns. A three-dimensional finite element analysis (FEA) model is developed to calculate the temperature field of CFDST columns. After calibration of the FE model, the influences of important pararheters on the temperature field of the composite columns are investigated and a unified formula for calculating average temperatures of the columns' cross-section is obtained. Combining the average temperature with the "Unified theory" under axial compression, a simplified design method is put forward, which provides a unified formulation for both the plain CFST and CFDST columns relating to the axial bearing capacity at room and elevated temperature. The proposed formulas are calibrated through comparisons with fire tests on the columns, and it was found that the method produces safe results on average.
机译:提出了一系列新的统一设计公式,用于计算承受火的圆形实心或空心混凝土填充双钢管(CFDST)短柱和细长柱的温度场和耐火强度轴向压缩载荷。实验的结果首先是通过研究CFSDT细长柱在ISO 834标准着火和温度分布下的基本行为得出的。还获得并讨论了失效模式和轴向变形与时间的关系曲线。已经认识到,与填充普通混凝土的柱相比,实心或细长CFDST柱具有不同的温度场,更强的极限温度和更好的耐火性。同样,实心和空心CFDST柱的结果之间的载荷比和钢比也没有明显差异。建立了三维有限元分析(FEA)模型来计算CFDST柱的温度场。在对有限元模型进行校正后,研究了重要参数对复合柱温度场的影响,并获得了计算柱截面平均温度的统一公式。将平均温度与轴向压缩下的“统一理论”相结合,提出了一种简化的设计方法,该方法为普通CFST和CFDST柱提供了有关室温和高温下的轴向承载力的统一公式。通过与色谱柱上的耐火测试进行比较,对提出的公式进行了校准,发现该方法平均可以得出安全的结果。

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