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Fire performance of steel reinforced concrete-filled stainless steel tubular (CFSST) columns with square cross-sections

机译:方形截面的钢管混凝土(CFSST)钢管的防火性能

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摘要

Concrete-filled stainless steel tubular (CFSST) columns combine the advantages of composite action seen in concrete-filled steel tubular (CFST) columns with the durability benefits associated with stainless steel. An effective means of reducing the material usage in the outer stainless steel tube in CFSST columns is to embed an inner carbon steel profile. This enables the material costs to be reduced, while achieving similar load-bearing capacity and durability, as well as enhanced fire resistance. The behaviour of such steel reinforced composite columns, i.e. concrete-filled stainless steel tubular (CFSST) columns with outer square cross-sections and embedded carbon steel profiles, under ISO 834 standard fire conditions is investigated in this study by finite element (FE) analysis. Firstly, FE models are developed and validated against relevant published experimental data on CFSST and steel reinforced CFST columns under fire conditions. Based on the validated FE models, the working mechanisms of the studied steel reinforced CFSST columns under fire conditions are investigated by analysis of the temperature field, failure modes, axial deformation versus time response and internal force distribution. The fire performance of the studied steel reinforced CFSST columns is also evaluated in comparison with CFST and CFSST columns with the same total cross-sectional area of steel or the equivalent cross-sectional load-bearing capacity at ambient temperature. Finally, with respect to fire resistance, the optimal ratio of the cross-sectional areas of the inner carbon steel profile to the outer stainless steel tube is investigated.
机译:钢管混凝土(CFSST)立柱结合了钢管混凝土(CFST)立柱所具有的复合作用优势和不锈钢带来的耐用性优势。减少CFSST色谱柱的外部不锈钢管中材料用量的有效方法是嵌入内部碳素钢型材。这样可以降低材料成本,同时实现类似的承载能力和耐用性,并提高耐火性。通过有限元(FE)分析,研究了这种钢增强复合材料柱,即具有外部正方形横截面和嵌入式碳钢型材的钢管混凝土(CFSST)柱在ISO 834标准火灾条件下的性能。 。首先,在火灾条件下,针对相关的已发表的有关CFSST和钢筋CFST柱的实验数据,开发并验证了有限元模型。在验证的有限元模型的基础上,通过分析温度场,破坏模式,轴向变形与时间响应以及内力分布,研究了火灾条件下研究的钢筋CFSST钢柱的工作机理。与具有相同钢总截面积或等效截面承载能力的CFST和CFSST立柱相比,还评估了所研究的CFSST立柱的耐火性能。最后,关于耐火性,研究了内部碳钢型材与外部不锈钢管的横截面积的最佳比率。

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