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首页> 外文期刊>Journal of Constructional Steel Research >Behaviour of square hollow steel tubular (SHST) stub columns after elevated temperature
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Behaviour of square hollow steel tubular (SHST) stub columns after elevated temperature

机译:高温后方形空心钢管(SHST)短柱的行为

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To investigate the behaviour of square hollow steel tubular (SHST) stub columns after elevated temperatures under axial compression, a total of 51 specimens were tested, including 48 SHST stub columns after elevated temperatures and 3 SHST stub columns at ambient temperature, of which 12 SHST stub columns were carried out load-strain tests. The main parameters explored in the test include temperature ranging from 400 C-omicron to 1000 C-omicron, thickness (2.0 mm, 3.0 mm, 4.0 mm) and high temperature duration (1.0 h, 1.5 h, 2.0 h, 2.5 h). This paper presents the failure modes, load-bearing capacity, load-strain curves, load versus displacement curves, initial stiffness at elastic stage and ductility of the specimens. Results show that failure modes of SHST columns at ambient temperature and elevated temperature follow similar pattern. It was found, in general, that temperature and thickness have significant influence on the behaviour of SHST columns; however, high temperature duration has negligible influence on the behaviour of SHST columns. Based on the experimental results, a formula is proposed to calculate the load-bearing capacity of SHST stub columns after elevated temperatures. It is evident from the comparisons between the results calculated from the formulas and the experimental results that the calculation gives results with reasonable accuracy. Finite element models having the same dimensions of test specimens were simulated to compare the finite element analysis results with experimental results. It can be seen from the comparison that finite element analysis results were in good agreement with experimental results.
机译:为了研究方形空心钢管(SHST)短柱在轴向压缩后的行为,共测试了51个样品,包括高温后的48个SHST短柱和环境温度下的3个SHST短柱,其中12个SHST短柱进行了载荷应变测试。测试中探讨的主要参数包括温度范围从400微米到1000微米,厚度(2.0毫米,3.0毫米,4.0毫米)和高温持续时间(1.0小时,1.5小时,2.0小时,2.5小时)。本文介绍了失效模式,承载能力,载荷-应变曲线,载荷与位移曲线,弹性阶段的初始刚度和试样的延展性。结果表明,SHST色谱柱在环境温度和高温下的破坏模式遵循相似的模式。一般而言,发现温度和厚度对SHST色谱柱的性能有重大影响。但是,高温持续时间对SHST色谱柱的性能影响可忽略不计。根据实验结果,提出了计算高温下SHST短管柱承载力的公式。从公式计算的结果与实验结果之间的比较可以明显看出,计算得出的结果具有合理的准确性。模拟了具有相同样本尺寸的有限元模型,以将有限元分析结果与实验结果进行比较。从比较中可以看出,有限元分析结果与实验结果吻合良好。

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