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Fire testing of austenitic stainless steel I-section beam-columns

机译:奥氏体不锈钢I型梁柱的防火测试

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With the increasing use of stainless steel elements in construction, the need for comprehensive rules to enable their efficient structural design is clear. To date, the fire behaviour of stainless steel I-section beam & ndash;columns has been the subject of relatively little research. In particular, there is an absence of experimental data. To address this gap in knowledge, full-scale anisothermal fire tests on six grade 1.4301 austenitic stainless steel I-section beam & ndash;columns have been carried out; the test procedure and results are reported herein. The test specimens were subjected to eccentric axial compression with two eccentricity values so as to achieve different combinations of axial compression and uniform minor axis bending. Complementary initial local and global geometric imperfection measurements, room temperature tensile coupon tests and room temperature beam & ndash;column tests were also carried out. Based on the obtained experimental results, together with additional numerical results from a previous study, the existing design rules in the European structural steel fire design standard EN 1993-1-2 and the new design method of Kucukler et al. (2021) for stainless steel beam & ndash;columns in fire, which will be incorporated into the next version of EN 1993-1-2, are assessed.
机译:随着不锈钢元素的越来越多的建设,需要综合规则来实现其高效的结构设计。迄今为止,不锈钢I形梁&ndash的火灾行为一直是研究的主题。特别地,没有实验数据。为了解决知识的这种差距,全面的六级1.4301奥氏体不锈钢I形剖面梁&ndash的全面的引人注目。已经进行了柱;本文报道了测试程序和结果。经过试样,具有两个偏心值的偏心轴向压缩,以实现不同组合的轴向压缩和均匀的短轴弯曲。互补初始本地和全球几何不完美测量,室温拉伸优惠券试验和室温梁–还进行了柱试验。基于所获得的实验结果,与先前研究的其他数值结果一起,欧洲结构钢火设计标准的现有设计规则和Kucuker等人的新设计方法。 (2021)对于不锈钢梁–评估了柱上的柱子,将被评估到EN 1993-1-2的下一个版本中。

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