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Design of cold-formed stainless steel RHS and SHS beam-columns at elevated temperatures

机译:高温下冷成形不锈钢RHS和SHS梁柱的设计

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Numerical investigation of cold-formed stainless steel beam-columns at elevated temperatures ranged from 24-960 degrees C has been performed. The beam-column specimens were subjected to axial compression and minor axis bending. A finite element model was developed and validated against available experimental results at ambient temperature. An extensive parametric study with 308 lean duplex, austenitic and duplex stainless steel beam-column specimens of square and rectangular hollow section was carried out, and the numerical results were compared with the design strengths calculated by the American Specification, Australian/New Zealand Standard, European Code, and direct strength method. The suitability of these design rules for cold-formed stainless steel beam-columns at elevated temperatures were assessed by reliability analysis. It is shown that the existing design specifications are generally capable of predicting the cold-formed stainless steel beam-column strengths at elevated temperatures, and they are all considered to be reliable according to reliability analysis. The direct strength method provides the most accurate prediction when the carbon steel curve was used. The European Code provided the most conservative prediction among the design rules assessed in this study.
机译:已经进行了升高温度的冷成形不锈钢梁柱的数值研究。梁柱试样经受轴向压缩和短轴弯曲。开发了有限元模型并验证了环境温度的可用实验结果。采用广泛的参数化参数化,方形和矩形中空部分的奥氏体和双相不锈钢柱柱试样,与美国规格,澳大利亚/新西兰标准计算的设计强度进行了比较了数值结果,欧洲规范,直接强度方法。通过可靠性分析评估了升高温度下冷却的不锈钢梁柱的这些设计规则的适用性。结果表明,现有的设计规范通常能够在升高的温度下预测冷形成的不锈钢柱柱强度,并且根据可靠性分析,它们都被认为是可靠的。直接强度法提供了使用碳钢曲线时最精确的预测。欧洲守则提供了本研究评估的设计规则中最保守的预测。

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