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带截面横向加强的冷弯 S 形梁承载能力的试验、数值与分析评估

Experimental, Numerical and Analytical Evaluation of Load-Bearing Capacity of Cold-Formed S-Beam with Sectional Transverse Strengthening.

作者信息

Studziński Robert, Semko Volodymyr, Ciesielczyk Katarzyna, Fabisiak Mateusz

机构信息

Faculty of Civil and Transport Engineering, Poznan University of Technology, Piotrowo 5 Street, 60-965 Poznan, Poland.

出版信息

Materials (Basel). 2024 Dec 18;17(24):6198. doi: 10.3390/ma17246198.

Abstract

The article provides information about strengthening cold-formed thin-walled steel beams made of the sigma profile. An innovative concept for sectional transverse strengthening of thin-walled beams subjected to concentrated forces was investigated. The proposed solution's novelty lies in attaching the sectional transverse strengthening to the beam's cross-section, employing a point crimping technique. This technique requires a specific modification of the cross-section edges, necessitating double-lipped flanges. This strengthening method is innovative, as it has not been previously applied to cold-formed structures. Typically, strengthening is achieved using other cold-formed elements or materials, such as timber, lightweight concrete, or CFRP tapes. The laboratory experimentally validated the proposed method using short- and medium-length beams. The experimental results were then compared with the results of the numerical analyses and the conventional design approach described in EC3. The results demonstrated the feasibility of implementing this type of strengthening, its reliability under load, and the confirmation of an increase in the load-bearing capacity of the experimental samples by 11-24%.

摘要

本文提供了关于由西格玛型材制成的冷弯薄壁钢梁加固的信息。研究了一种针对承受集中力的薄壁梁进行截面横向加固的创新概念。所提出解决方案的新颖之处在于采用点压接技术将截面横向加固件连接到梁的横截面。该技术需要对横截面边缘进行特定修改,因此需要双折边翼缘。这种加固方法具有创新性,因为它以前未应用于冷弯结构。通常,加固是使用其他冷弯元件或材料来实现的,如木材、轻质混凝土或CFRP带。实验室通过短梁和中长梁对所提出的方法进行了实验验证。然后将实验结果与数值分析结果以及欧洲规范3(EC3)中描述的传统设计方法的结果进行了比较。结果证明了实施这种加固类型的可行性、其在荷载作用下的可靠性,并证实了实验样本的承载能力提高了11%至24%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e23c/11676304/ddaba4e6c4e4/materials-17-06198-g001.jpg

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