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Structural performance of cold-formed lean duplex stainless steel beams at elevated temperatures

机译:高温下冷弯精益双相不锈钢梁的结构性能

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The structural performance of cold-formed lean duplex stainless steel beams at elevated temperatures ranging from 24 to 900 degrees C was investigated in this study. A finite element model was developed. The numerical analysis covered the specimens of square and rectangular hollow sections. The material properties obtained from tensile coupon tests on lean duplex stainless steel at elevated temperatures were used in the finite element model. A total of 125 numerical flexural strengths were obtained from the finite element analysis. The numerical results were compared with the design values calculated by the existing design rules, including the American Specification, Australian/New Zealand Standard, European Code, direct strength method and continuous strength method. The suitability of these design rules for lean duplex stainless steel beams at elevated temperatures was assessed using reliability analysis. It was shown that the existing design rules are generally quite conservative in predicting the flexural strengths at elevated temperatures, except that the modified direct strength method provides accurate and reliable predictions. Therefore, it is recommended that the modified direct strength method be used for cold-formed lean duplex stainless steel beams at elevated temperatures.
机译:在这项研究中,研究了冷成形的精益双相不锈钢梁在24至900摄氏度的高温下的结构性能。建立了有限元模型。数值分析涵盖了正方形和矩形空心截面的标本。有限元模型中使用了在高温下对贫双相不锈钢进行拉伸试样试验获得的材料性能。从有限元分析中获得了总共125个数值抗弯强度。将数值结果与通过现有设计规则(包括美国规范,澳大利亚/新西兰标准,欧洲规范,直接强度方法和连续强度方法)计算出的设计值进行比较。使用可靠性分析评估了这些设计规则在高温下对精益双相不锈钢梁的适用性。结果表明,现有的设计规则在预测高温下的弯曲强度方面通常相当保守,只是改进的直接强度方法提供了准确而可靠的预测。因此,建议将改进的直接强度方法用于高温下的冷弯薄型双相不锈钢梁。

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