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Evaluation of European approaches applied to design of TWCF steel members

机译:欧洲方法对TWCF钢构件设计的评估

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摘要

Thin-walled cold-formed (TWCF) steel members are widely used in aerospace, automobile and architecture industries. Among the various advantages, mainly associated with the relatively simple and very cheap techniques required for their production and shaping, it is important to mention the relevant high strength to weight ratio. Beside the benefits, it has to be pointed out that the TWCF member response is quite difficult to be predicted because of the significant influence of local, distortional and overall buckling phenomena, owing to the frequent presence of open mono-symmetric cross-sections.The present paper can be intended as a typical technical paper whose results are useful not only for research activities, but, especially, for the routine design. It summarises a study aimed at increasing the safety of two European approaches that should be potentially adoptable for designing TWCF steel members. The grade of reliability of these existing European procedures has been evaluated by predicting the performance of more than 240 TWCF members tested in laboratory, selected in the framework of 13 experimental studies, taken from the literature. Being the assessed load carrying capacity sometimes significantly greater than the characteristic experimental one, suitable safety factors have been consequently calibrated and proposed for each cross-section type, to be directly adopted in routine design to match the requirements associated with the limit state philosophy. Finally, the strength of additional TWCF beam-column specimens has been predicted to assess the efficiency of the proposed coefficients for practical cases frequently encountered in routine design. A complete benchmark is proposed in Appendix A, where the application of the considered design procedures for one selected case is reported.
机译:薄壁冷弯(TWCF)钢构件广泛用于航空航天,汽车和建筑行业。在各种优点中(主要与它们的生产和成型所需的相对简​​单且非常便宜的技术有关),重要的是要提及相关的高强度重量比。除了带来的好处外,还必须指出,由于局部存在,扭曲和整体屈曲现象的显着影响,由于开放单对称截面的频繁出现,TWCF构件的响应很难预测。本论文可以用作典型的技术论文,其结果不仅对研究活动有用,而且尤其对常规设计有用。它总结了一项旨在提高两种欧洲方法的安全性的研究,这两种方法在设计TWCF钢构件时应潜在地可以采用。这些现有的欧洲程序的可靠性等级已通过预测在实验室进行测试的超过TWCF成员的性能进行了评估,该成员是在13项实验研究的框架内从文献中选取的。由于评估的负载能力有时明显大于特性实验值,因此已经针对每种横截面类型进行了校准并提出了合适的安全系数,这些安全系数将直接用于常规设计中,以符合与极限状态原理相关的要求。最后,已经预测了额外的TWCF梁柱标本的强度,可以针对常规设计中经常遇到的实际情况评估建议系数的效率。附录A中提出了一个完整的基准,其中报告了针对一种选定案例的考虑的设计程序的应用。

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