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Experimental Studies of Cold-Formed Steel Hollow Section Columns at Elevated Temperatures

机译:高温冷弯型钢空心截面柱的试验研究

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This paper reports the details of an experimental study of cold-formed steel hollow section columns at ambient and elevated temperatures. In this study the global buckling behaviour of cold-formed Square Hollow Section (SHS) slender columns under axial compression was investigated at various uniform elevated temperatures up to 700°C. The results of these column tests are reported in this paper, which include the buckling/failure modes at elevated temperatures, and ultimate load versus temperature curves. Finite element models of tested columns were also developed and their behaviour and ultimate capacities at ambient and elevated temperatures were studied. Fire design rules given in European and American standards including the Direct Strength Method (DSM) based design rules were used to predict the ultimate capacities of tested columns at elevated temperatures. Elevated temperature mechanical properties and stress-strain models given in European steel design standards and past researches were used with design rules and finite element models to investigate their effects on SHS column capacities. Comparisons of column capacities from tests and finite element analyses with those predicted by current design rules were used to determine the accuracy of currently available column design rules in predicting the capacities of SHS columns at elevated temperatures and the need to use appropriate elevated temperature material stress-strain models. This paper presents the important findings derived from the comparisons of these column capacities.
机译:本文报道了在室温和高温下冷弯型钢空心截面柱的实验研究的细节。在这项研究中,研究了在高达700°C的各种均匀升高的温度下,冷弯方型空心截面(SHS)细长柱在轴向压缩下的整体屈曲行为。本文报道了这些柱测试的结果,其中包括高温下的屈曲/失效模式,以及最终载荷与温度的关系曲线。还开发了测试柱的有限元模型,并研究了它们在环境和高温下的行为和极限容量。欧美标准中给出的防火设计规则(包括基于直接强度法(DSM)的设计规则)用于预测高温下被测柱的极限承载力。欧洲钢设计标准和过去的研究中给出的高温力学性能和应力应变模型与设计规则和有限元模型一起用于研究它们对SHS色谱柱容量的影响。将测试和有限元分析中的色谱柱容量与当前设计规则所预测的色谱柱容量进行比较,以确定当前可用的色谱柱设计规则在预测高温下SHS色谱柱容量以及使用适当的高温材料应力的必要性方面的准确性。应变模型。本文介绍了从这些色谱柱容量的比较中得出的重要发现。

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