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Design of cold-formed stainless steel tubular joints at elevated temperatures

机译:高温下冷弯不锈钢管接头的设计

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This paper describes the numerical investigation of cold-formed stainless steel tubular T-joints, X-joints and X-joints with chord preload at elevated temperatures. A series of finite element analysis was performed on stainless steel tubular joints. The tubular T- and X-joints were welded from cold-formed square and rectangular hollow sections as brace and chord members. The material properties of high strength stainless steel (duplex and high strength austenitic) and normal strength stainless steel (AISI 304) at elevated temperatures were carefully incorporated in the finite element models. An extensive numerical study of 450 specimens consists of 20 T-joints, 10 X-joints and 20 X-joints with chord preload at different temperatures ranged from 22 to 870 ℃ was conducted. The joint strengths, failure modes and load-deformation curves of stainless steel tubular joints at elevated temperatures were obtained from the finite element analysis. The numerical results were compared with the design strengths calculated from the existing design rules for stainless steel tubular joints at normal room temperature (ambient temperature) by using the material properties of stainless steel tubes at elevated temperatures. In the calculation of the joint strengths, the reduced material property of 0.2% proof stress was used due to the deterioration of material at elevated temperatures. Furthermore, design equations for cold-formed stainless steel tubular T- and X-joints at elevated temperatures are proposed by introducing a temperature factor (ST). A reliability analysis was performed to assess the existing and proposed design equations.
机译:本文描述了在高温下带弦预紧的冷弯不锈钢管状T型接头,X型接头和X型接头的数值研究。对不锈钢管接头进行了一系列有限元分析。管状的T型和X型接头是从冷弯的方形和矩形空心截面焊接而成的,作为支撑和弦杆构件。有限元模型中仔细考虑了高温下高强度不锈钢(双相和高强度奥氏体)和普通强度不锈钢(AISI 304)的材料性能。在22〜870℃的不同温度下,对450个标本进行了广泛的数值研究,包括20个T型接头,10个X型接头和20个X型接头的弦预压。通过有限元分析获得了高温下不锈钢管接头的接头强度,破坏模式和载荷-变形曲线。通过使用不锈钢管在高温下的材料性能,将数值结果与根据现有设计规则在正常室温(环境温度)下计算得出的设计强度进行比较。在连接强度的计算中,由于材料在高温下的劣化而使用了降低的材料特性(0.2%屈服强度)。此外,通过引入温度系数(ST)提出了在高温下冷弯不锈钢T型和X型接头的设计方程。进行了可靠性分析,以评估现有和建议的设计方程式。

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