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Performance of concrete-filled steel tubular column-wall structure subjected to ISO-834 standard fire: analytical behaviour

机译:符合ISO-834标准防火的钢管混凝土柱-墙结构的性能:分析性能

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Concrete-filled steel tubular (CFST) column-wall has a promising prospect in the construction field, especially for multi-story residential buildings. It is very important to have a thorough understanding of its mechanical behaviour and fire resistance. This is a companion paper that carries forward the work by the authors [1]. The previous paper focused on full-scale testing to determine the fire resistance of CFST column-wall, whereas this paper deals with finite element analysis and simplified design method for such composite structural elements. Heat transfer mechanism was analysed by comparing the temperature distributions of CFST column-wall sections with different fire exposures. Structural analysis, such as internal force distribution, strain and stress of different components, interfacial behaviour between steel and concrete was given to describe the deformation behaviour and failure mechanism of CFST column-wall. Based on the FEA model, parametric analysis was carried out to investigate the influence of geometric, load and physical parameters on the fire resistance of CFST column-wall. Since no specific design rules can be found for CFST column-walls, a simplified fire design method was proposed in this paper to calculate the fire resistance of CFST column-wall structure.
机译:钢管混凝土(CFST)柱墙在建筑领域具有广阔的前景,特别是对于多层住宅楼。全面了解其机械性能和耐火性非常重要。这是一篇伴随作者的论文,[1]。先前的论文集中于全面测试以确定CFST柱壁的耐火性,而本文则针对此类复合结构元件进行了有限元分析和简化的设计方法。通过比较不同火暴露条件下CFST柱壁截面的温度分布来分析传热机理。通过对内力分布,不同构件的应变和应力,钢与混凝土的界面行为等结构分析,描述了CFST柱壁的变形行为和破坏机理。在有限元分析模型的基础上,进行了参数分析,研究了几何参数,荷载和物理参数对CFST柱壁耐火性的影响。由于目前尚无关于CFST柱壁的具体设计规则,因此本文提出了一种简化的火灾设计方法来计算CFST柱壁结构的耐火性。

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