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Design of stainless steel continuous beams with tubular cross-sections

机译:用管状横截面设计不锈钢连续梁

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摘要

This paper presents a comprehensive study on the application of global plastic design methods, not currently allowed in European specification provisions, to stainless steel rectangular and square hollow section continuous beams. The analysis of experimental and numerical continuous beam strengths highlighted that ultimate capacity predictions calculated based on global elastic analysis result in a considerable conservatism due to strain hardening and bending moment redistribution effects. Alternatively, the assessment and reliability analyses of the traditional plastic design methods demonstrated that the Class 1 cross-section limit provided in the European specification can be safely applied for the partial safety factor ¿M0 currently provided. However, the analysis evidenced that including bending moment redistribution in capacity predictions is not enough since strain hardening effects play an important role when stocky cross-sections are analysed. Thus, the Continuous Strength Method for indeterminate structures was also assessed and it was found to provide accurate capacity predictions for all analysed stainless steel grades. Finally, an alternative Direct Strength Method design approach is proposed for stainless steel continuous beams based on the Direct Strength Method bending capacity. The proposed method, statistically validated, accounts for strain hardening effects and moment redistribution and provides the best resistance predictions among the different design methods considered
机译:本文介绍了全球塑料设计方法的应用,目前欧洲规范规定的应用,不锈钢矩形和方形中空部分连续梁。实验和数值连续光束强度的分析突出显示基于全局弹性分析计算的最终容量预测导致由于应变硬化和弯曲力矩再分配效应导致相当大的保守。或者,传统塑料设计方法的评估和可靠性分析表明,欧洲规范中提供的1类横截面限制可以安全地应用于当前提供的部分安全因子¿M0。然而,分析证明,包括弯曲力矩在容量预测中再分配是不够的,因为应变硬化效果在分析股票横截面时发挥着重要作用。因此,还评估了用于不确定结构的连续强度方法,发现它为所有分析的不锈钢等级提供了准确的容量预测。最后,基于直接强度法弯曲能力,提出了一种替代的直接强度方法设计方法,提出了不锈钢连续梁。该方法,统计上验证,占应变硬化效应和时刻再分配,并在考虑的不同设计方法中提供了最佳阻力预测

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