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Numerical study of cold-formed steel channel sections under combined web crippling and bending action

机译:基于纤维网跨越和弯曲作用下的冷成型钢通道部分的数值研究

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Cold-formed steel sections used in floor systems are vulnerable to web crippling, and with increasing span lengths, they are likely to fail under combined web crippling and bending action. A numerical study was therefore undertaken to investigate the combined web crippling-bending interaction behaviour of unlipped channel sections used as bearers in floor systems with fastened supports. Web crippling finite element models developed and validated by the authors in a recent study were extended to investigate the behaviour of unlipped channels under combined action of web crippling and bending while new finite element models were developed for bending and validated using available experimental results. All three types of finite element models were used in a detailed parametric study to obtain the capacities of 12 unlipped channel sections made of G250 and G450 steels under pure and combined web crippling and bending actions. Comparison of the combined web crippling and bending capacities obtained from finite element analyses with the interaction equations in three cold-formed steel design standards, AISI 5100, AS/NZS 4600 and Eurocode 3 Part 1.3, showed that the current design equations are accurate for 50 mm bearing length. However, they can also be used to predict the combined web crippling-bending capacities conservatively for bearing lengths of 100 and 150 mm. A new design equation with a suitable capacity reduction factor was then proposed to improve the accuracy of predicting the mid-span load capacity of channel sections subject to combined web crippling and bending actions.
机译:在地板系统中使用的冷成型钢部分容易受到腹板的伤害,并且随着跨度长度的增加,它们可能会在组合的网状纤维和弯曲动作下失效。因此,进行了数值研究,以研究用作固定支撑件的地板系统中用作承载的联合腹板弯曲相互作用行为。作者在最近一项研究中开发和验证的Web Crippling有限元模型被扩展到探讨了Web Crippling和弯曲的组合行动下的直接通道的行为,而新的有限元模型是用于使用可用实验结果的弯曲和验证。在详细的参数研究中使用了所有三种类型的有限元模型,以获得在纯净和组合的网状纤维和弯曲动作下由G250和G450钢制成的12个未加工通道部分的容量。从有限元分析中获得的组合幅材的纤维网加法力和弯曲能力与三种冷成型钢设计标准中的相互作用方程,AISI 5100,AS / NZS 4600和EUROCODE 3部分1.3显示,电流设计方程准确为50 MM轴承长度。然而,它们还可用于预测守保地用于100和150mm的轴承长度的组合的腹板弯曲能力。然后提出了一种具有合适容量减小因子的新设计方程,以提高预测经受组合的频道部分的跨度负载能力和弯曲动作的准确性。

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