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Finite element analysis of cold-formed lean duplex stainless steel columns at elevated temperatures

机译:高温下冷弯精益双相不锈钢柱的有限元分析

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The behaviour of cold-formed lean duplex stainless steel columns at elevated temperatures was investigated. A numerical investigation on columns of square and rectangular hollow sections were performed at elevated temperatures ranged from 24 to 900 degrees C. A validated numerical model with material properties obtained from tensile coupon tests at elevated temperatures were used in the finite element analysis. A total of 180 numerical column strengths were compared with design column strengths predicted by existing design rules, which do not cover the lean duplex stainless steel material at elevated temperatures. Reliability analysis was carried out to assess the suitability of the existing design rules for lean duplex stainless steel columns at elevated temperatures. It is shown that the existing design rules are generally not suitable for predicting the column strengths, except for the American Specification and the modified direct strength method for stainless steel. The modified direct strength method for stainless steel provides accurate and reliable predictions with relatively simple calculation procedure. Therefore, it is recommended that the modified direct strength method for stainless steel be used for design of cold-formed lean duplex stainless steel columns at elevated temperatures.
机译:研究了冷成型的贫双相不锈钢柱在高温下的行为。在24至900摄氏度的高温下对方形和矩形中空截面的圆柱进行了数值研究。在有限元分析中,使用了在高温下通过拉伸试样试验获得的材料性能得到验证的数值模型。将总共​​180个数值柱强度与现有设计规则预测的设计柱强度进行比较,现有设计规则不涵盖高温下的贫双相不锈钢材料。进行了可靠性分析,以评估现有设计规则对高温双相不锈钢柱的适用性。结果表明,除了美国规范和修改后的不锈钢直接强度方法外,现有的设计规则通常不适合预测柱强度。改进的不锈钢直接强度法通过相对简单的计算过程即可提供准确而可靠的预测。因此,建议将改进的不锈钢直接强度法用于高温下冷成型贫双相不锈钢柱的设计。

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