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Residual strength capacity of fire-exposed circular concrete-filled steel tube stub columns

机译:火灾下圆形钢管混凝土短柱的残余强度能力

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Concrete-Filled Steel Tube (CFST) columns are an increasingly popular means to support great compressive loads in buildings. The residual strength capacity of CFST stub columns may be utilized to assess the potential damage caused by fire and calculate the structural fire protection for least post-fire repair. Ten specimens under room conditions and 10 specimens under fire exposure to the Eurocode smouldering slow-growth fire were tested to examine the effects of diameter to thickness D/t ratio and reinforcing bars on residual strength capacity, ductility and stiffness of CFST stub columns. On the other hand, in sixteen among the twenty specimens, three or six reinforcing bars were welded inside the steel tube. The longitudinal strains in the steel tube and load-displacement relationships were recorded throughout the subsequent compressive tests. Corresponding values of residual strength capacity calculated using AISC 360-10 and EC4 standards are presented for comparison purposes with the experimental results of this study. The test results showed that after exposure to 750℃, the residual strength capacity increased for all specimens, while the ductility and stiffness were slightly decreased. The comparison results showed that the predicted residual strength using EC4 were close to those obtained experimentally in this research.
机译:钢管混凝土(CFST)柱是支撑建筑物中巨大压缩载荷的一种越来越流行的方法。 CFST短柱的残余强度能力可用于评估火灾引起的潜在破坏,并为火灾后的维修提供最少的结构防火保护。测试了10个室温条件下的样本和10个暴露于Eurocode闷热缓慢燃烧火焰下的样本,以检验直径/厚度D / t比和钢筋对CFST短柱的残余强度,延性和刚度的影响。另一方面,在二十个试样中的十六个中,在钢管内部焊接了三个或六个钢筋。在随后的压缩试验中,记录了钢管中的纵向应变和载荷-位移关系。给出了使用AISC 360-10和EC4标准计算出的残余强度能力的相应值,以与本研究的实验结果进行比较。测试结果表明,暴露于750℃后,所有试样的残余强度均增加,而延展性和刚度则略有下降。比较结果表明,使用EC4预测的残余强度与本研究中通过实验获得的强度接近。

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