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Performance of concrete-filled stainless steel tubular (CFSST) columns after exposure to fire

机译:暴露于火灾后的混凝土不锈钢管状(CFSST)柱的性能

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The post-fire performance of concrete-filled stainless steel tubular (CFSST) columns subjected to an entire loading-fire history, including four characteristic phases: (i) ambient temperature loading, (ii) heating, (iii) cooling with constant external loads, and (iv) post-fire loading, is investigated in this paper. Sequentially coupled thermal-stress analyses are performed using ABAQUS to establish the temperature field and structural response of CFSST columns. To improve the precision of the finite element analysis (FEA) models, the influence of moisture on the thermal conductivity and specific heat of the concrete in the heating and cooling phases is considered by using subroutines. Existing fire and post-fire test data on CFSST columns are used to validate the FEA modelling. Comparisons between FEA and test results indicate that the accuracy of the model is acceptable; the FEA model is then extended to simulate CFSST columns subjected to the four characteristic phases. The behaviour of the CFSST columns during the four characteristic phases is explained by analysis of the temperature distribution, load versus axial deformation relations, failure modes and internal force redistribution. The excellent post-fire performance of CFSST columns is examined in comparison with traditional concrete-filled carbon steel tubular (CFST) columns with the same total cross-sectional area. The residual strength index is studied with respect to a series of parametric analyses. It is found that the residual strength of CFSST columns is higher than that of CFST columns after the same fire exposure, and that the diameter of the stainless steel tube, slenderness, heating time ratio and load ratio have a significant influence on the residual strength index.
机译:填充混凝土不锈钢管(CFSST)柱的火灾后性能进行整个装载 - 火灾历史,包括四个特征阶段:(i)环境温度负荷,(ii)加热,(iii)用恒定的外部载荷冷却(IV)在本文中调查了火灾后装载。依次耦合的热应力分析使用ABAQU来建立CFSST柱的温度场和结构响应。为了提高有限元分析(FEA)模型的精度,通过使用子程序考虑水分对加热和冷却阶段中混凝土的热导率和比热的影响。 CFSST列的现有火灾和火灾后测试数据用于验证FEA建模。 FEA与测试结果的比较表明模型的准确性是可接受的;然后扩展FEA模型以模拟经过四个特征阶段的CFSST列。通过分析温度分布,载荷与轴向变形关系,故障模式和内部力再分配来解释CFSST列在四个特征相期间的行为。与具有相同总横截面积的传统混凝土填充的碳钢管(CFST)柱相比,检查了CFSST柱的优异后火性性能。关于一系列参数分析研究了残余强度指数。发现CFSST塔的残余强度高于同一火灾暴露后的CFST柱的强度,并且不锈钢管的直径,细长,加热时间比和负荷比对残余强度指数具有显着影响。

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