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The effect of manufacturing process on the post-fire mechanical response of thin-walled ultra-high strength steel (Grade 1200) tubes

机译:制造工艺对薄壁超高强度钢管(1200级)管子的燃烧后力学响应的影响

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This study aims to investigate the effect of manufacturing process on the post-fire mechanical response of Grade 1200 ultra-high strength steel (UHSS) tubes. To this end, the post-fire mechanical properties of "direct-quenched" UHSS (UHSS-DQ) standard tensile coupons are compared to those made of "quenched and tempered" UHSS material (UHSS-QT) with similar original room temperature stress-strain responses. Thus, to compare the post-fire compression behaviour of UHSS-DQ tubular stub columns with those made of UHSS-QT material, a finite element (FE) model is developed in ABAQUS FE software with precise material properties extracted from the results of the post-fire tensile coupon tests. Quasi-static compression tests are then conducted on UHSS-QT tubular stub columns cooled from different fire temperatures to room temperature to validate the FE analysis. Using the results of the tensile coupon tests and the FE analysis on UHSS stub columns, it is shown that the manufacturing process substantially affects the mechanical properties of UHSS stub columns under cooling phase of a fire.
机译:这项研究旨在研究制造工艺对1200级超高强度钢管(UHSS)的燃烧后机械响应的影响。为此,我们将“直接淬火”的UHSS(UHSS-DQ)标准拉伸试样的燃烧后力学性能与由“淬火和回火”的UHSS材料(UHSS-QT)制成且具有类似原始室温应力的材料进行了对比。应变响应。因此,为了比较UHSS-DQ管状短管柱与UHSS-QT材料制成的柱后压缩行为,在ABAQUS FE软件中开发了有限元(FE)模型,并从柱后结果中提取了精确的材料属性。防火拉伸试样测试。然后,在从不同着火温度冷却至室温的UHSS-QT管状短管柱上进行准静态压缩测试,以验证FE分析。使用UHSS短柱的拉伸试样测试结果和有限元分析,表明制造过程会在火灾冷却阶段显着影响UHSS短柱的机械性能。

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