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Calculation method for the residual stability bearing capacity under axial compression of steel tube members exposed to a high temperature

机译:高温条件下钢管构件轴向压缩残余稳定承载力的计算方法

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Fire accidents occur occasionally when grid structures are extensively applied, although many grid structures do not suffer general failure after fire disasters and can be used again after reasonable evaluation and reinforcement. To reasonably evaluate the residual load bearing capacity of grid structures, this paper investigated stability bearing capacity of steel tube members in grid structures after fire disasters through axial compression experiment and numerical simulation. Axial compression experiments performed on 32 steel tubes after exposure to the ISO-834 standard fire, and three highest fire temperatures were considered, including 600 degrees C, 800 degrees C and 1000 degrees C. The temperature distributions in the specimens during the heating and related mechanical properties such as load-displacement curves, ultimate loads and strain distributions of the specimens, were obtained and analyzed. Finite element analysis was also conducted by using ABAQUS software. Then, the main factors influencing the residual stability bearing capacities of the steel tube members exposed to high temperatures were obtained through a lot of numerical analysis. Based on the results of experiments and numerical analysis, the formula for the computation of the residual stability bearing capacities of the steel tube members after fire disasters was presented. And calculated results using the formulas accorded well with experimental results.
机译:尽管许多网格结构在火灾后不会遭受一般性破坏,但在经过合理评估和加固后可以再次使用,但在广泛应用网格结构时,偶尔会发生火灾事故。为了合理评估格栅结构的残余承载力,本文通过轴向压缩试验和数值模拟研究了火灾后格栅结构中钢管构件的稳定承载力。在暴露于ISO-834标准火灾后对32个钢管进行了轴向压缩实验,并考虑了三个最高的火灾温度,包括600摄氏度,800摄氏度和1000摄氏度。加热过程中及相关​​过程中样品的温度分布获得并分析了试样的力学性能,如载荷-位移曲线,极限载荷和应变分布。还使用ABAQUS软件进行了有限元分析。然后,通过大量的数值分析得出了影响高温下钢管构件残余稳定性承载能力的主要因素。根据实验结果和数值分析,提出了火灾后钢管构件残余稳定承载力的计算公式。计算结果与实验结果吻合较好。

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