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由横向扭转屈曲条件产生的简单梁格的弹性临界阻力:有限元建模与分析考量

Elastic Critical Resistance of the Simple Beam Grillage Resulting from the Lateral Torsional Buckling Condition: FEM Modelling and Analytical Considerations.

作者信息

Piotrowski Rafał, Szychowski Andrzej, Vičan Josef

机构信息

Department of Strength of Materials and Building Structures, Faculty of Civil Engineering and Architecture, Kielce University of Technology, 25-314 Kielce, Poland.

Department of Structures and Bridges, Faculty of Civil Engineering, University of Zilina, Univerzitna 8215/1, 010 26 Zilina, Slovakia.

出版信息

Materials (Basel). 2023 Feb 5;16(4):1346. doi: 10.3390/ma16041346.

Abstract

Transversely loaded beam grillages are quite often used in industrial construction. In order to produce a safe design of such structures, it is necessary to account for the lateral torsional buckling phenomenon, which reduces load-bearing capacity. To be able to calculate the relevant reduction factor, the elastic critical load must be determined. As regards the existing design practice for such structures, simplified conditions are assumed for the mutual restraint of the component beams. However, this approach does not correspond to reality. This study discusses the results of numerical investigations and analytical calculations concerning the effect of the elastic action of simple beam grillage (SBG) joints on the critical load, which results from the lateral torsional buckling (LTB) condition. The SBG was defined as a flat system of interconnected beams, unstiffened laterally and loaded perpendicularly to the grillage plane. The analysis covered H-shaped grillages with different span ratios of component beams, in which the main (coupling) beam was decisive for instability. The effectiveness of the use of closed-section stiffeners at the grillage joints was also investigated. The grillage elastic critical resistances (ECR) were determined for two variants of joint stiffening. The computations were performed by means of FEM numerical simulations. The spatial models were discretised with the following elements: (1) solid ones in Abaqus, (2) shell ones in ConSteel, and (3) thin-walled bars in ConSteel. The LTB critical moments of the weakest beam (critical beam), elastically restrained against warping and against lateral rotation (in the LTB plane), were computed using the analytical methods developed by the authors. To this end, the methods were proposed to determine the indexes of the critical beam elastic restraint in the adjacent stiffening beams. In the study, it was demonstrated that (1) taking into account the conditions of mutual elastic restraint and interaction of the component beams provides a more accurate assessment of the grillage ECR, (2) the use of closed-section stiffeners in the grillage joints increase the ECR compared with classic flat stiffeners, (3) the grillage ECR can be estimated based on the critical moment of the weakest beam (critical beam) when the conditions of its elastic restraint in joints are accounted for.

摘要

横向加载的梁格在工业建筑中经常被使用。为了对这类结构进行安全设计,有必要考虑横向扭转屈曲现象,该现象会降低承载能力。为了能够计算相关的折减系数,必须确定弹性临界荷载。关于此类结构的现有设计实践,对组成梁的相互约束采用了简化条件。然而,这种方法与实际情况不符。本研究讨论了关于简单梁格(SBG)节点的弹性作用对横向扭转屈曲(LTB)条件下临界荷载影响的数值研究和分析计算结果。SBG被定义为相互连接的梁的平面系统,横向无加劲且垂直于梁格平面加载。分析涵盖了组成梁具有不同跨度比的H形梁格,其中主(耦合)梁对失稳起决定性作用。还研究了在梁格节点处使用封闭截面加劲肋的有效性。针对两种节点加劲变体确定了梁格弹性临界抗力(ECR)。计算通过有限元数值模拟进行。空间模型用以下单元离散化:(1)Abaqus中的实体单元,(2)ConSteel中的壳单元,以及(3)ConSteel中的薄壁杆件。使用作者开发的分析方法计算了最弱梁(临界梁)在弹性约束下抵抗翘曲和横向旋转(在LTB平面内)的LTB临界弯矩。为此,提出了确定相邻加劲梁中临界梁弹性约束指标的方法。研究表明:(1)考虑组成梁的相互弹性约束和相互作用条件能更准确地评估梁格ECR;(2)与传统平板加劲肋相比,在梁格节点处使用封闭截面加劲肋可提高ECR;(3)当考虑其在节点处的弹性约束条件时,可基于最弱梁(临界梁)的临界弯矩来估算梁格ECR。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/917c/9963179/0b836a136352/materials-16-01346-g001.jpg

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