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Numerical simulation of the thermal and mechanical behavior of cold-formed steel composite floor under fire conditions

机译:火灾条件下冷成型钢复合地板热和力学行为的数值模拟

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Cold-formed steel (CFS) building structures are generally acknowledged as green and industrialized buildings, and the fire resistance behavior has become an important issue. Previous studies were mainly to investigate the fire performance of load-bearing CFS walls lined with different panels. Based on the finite element (FE) software package, ABAQUS, this paper presented a numerical simulation on a new CFS channel joist - ALC (autoclaved lightweight concrete) composite floor under fire conditions. Finally, the present numerical simulation of CFS composite floor in fire was compared with previous full-scaled fire experiments of such floors. The results showed that the temperature progression of the CFS floor section was well predicted with acceptable accuracy. The time-dependent vertical deflection of the CFS floor was well described and the fire resistance time of CFS floor system was well predicted with an underestimation of less than 6% and an overestimation of less than 10%.
机译:冷成型钢(CFS)建筑结构通常被视为绿色和工业化建筑物,耐火性行为已成为一个重要问题。以前的研究主要是调查含有不同面板的承重CFS壁的火灾性能。基于有限元(FE)软件包,ABAQUS,本文介绍了在火灾条件下的新型CFS通道托梁 - ALC(自动灭菌轻质混凝土)复合地板上的数值模拟。最后,将CFS复合地板在火灾中的现有数值模拟与此类地板的先前全缩放的防火实验进行了比较。结果表明,CFS地板部分的温度进展良好地预测了可接受的精度。 CFS地板的时间依赖性垂直偏转很好地描述,CFS地板系统的耐火时间良好地预测,低于6%,高估低于10%。

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