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Effect of the manufacturing process on the behaviour of press-braked thin-walled steel columns

机译:制造工艺对压弯薄壁钢柱性能的影响

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摘要

The manufacturing process of cold-formed thin-walled steel columns induces cold work in them and significantly affects their behaviour. This effect has traditionally been assessed using idealised residual stress distributions based on limited laboratory measurements in conjunction with the specification of different mechanical properties for the flat portions and the corner regions. This conventional approach is highly empirical and often does not accurately reflect the effect of cold work on column behaviour. This paper presents an advanced numerical approach for modelling the full-range structural behaviour of press-braked thin-walled steel columns, in which the effect of cold work is accurately and explicitly represented. In the proposed approach, the amount of cold work is quantified using residual stresses and the equivalent plastic strains predicted by a closed-form analytical solution for the cold-forming process and these analytical predictions are directly included in a finite element model for nonlinear buckling analysis. Using results obtained from this advanced numerical column model, the effect of cold work on column behaviour is examined for both carbon and stainless steel sections. The numerical results also explain why both the residual stresses and the column behaviour of cold-formed steel sections may differ considerably among nominally identical sections. The proposed method has the potential to replace laboratory tests to a large extent and can thus be deployed in future research to minimise the need for expensive laboratory testing.
机译:冷弯薄壁钢柱的制造过程会引起冷加工,并显着影响其性能。传统上,这种效果是根据有限的实验室测量结果,结合理想的残余应力分布,对平坦部分和拐角区域的不同机械性能进行评估的。这种常规方法具有很高的经验性,通常无法准确反映冷作对色谱柱性能的影响。本文提出了一种先进的数值方法,用于对压弯薄壁钢柱的全范围结构行为进行建模,其中精确而明确地表示了冷作的影响。在建议的方法中,使用残余应力和由冷成型过程的封闭形式分析解决方案预测的等效塑性应变对冷加工量进行量化,这些分析预测直接包含在非线性屈曲分析的有限元模型中。使用从这种先进的数值柱模型获得的结果,可以检查碳钢和不锈钢截面的冷作对柱性能的影响。数值结果也解释了为什么在名义上相同的截面之间,冷弯型钢截面的残余应力和柱特性都可能有很大差异。所提出的方法有可能在很大程度上取代实验室测试,因此可以在将来的研究中部署,以最大程度地减少对昂贵的实验室测试的需求。

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