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Load-capacity estimation and collapse analysis of thin-walled beams and columns―recent advances

机译:薄壁梁和柱的承载力估算和倒塌分析-最新进展

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The present paper is devoted to the recent results of research in the area of load-capacity and post-failure behaviour of thin-walled beams and columns (among them thin-walled cold-formed profiles). It deals with ultimate load and collapse of box-section girders (tubes) of different cross-sections under bending, as well as of lipped and plain channel-section beam-columns. The paper contains the presentation of theoretical analysis and experimental investigation of plastic mechanisms of failure and collapse behaviour of these thin-walled sections. The short review of results obtained in recent years in general precedes those obtained by the Department of Strength of Materials and Structures, TUL. The problem of post-failure behaviour is solved using the rigid-plastic theory adopted and modified for the purposes of the solution taking into consideration strain-hardening of the member's material. On the basis of experimental investigations theoretical models of plastic mechanisms of failure are produced for different sections. Theoretical analysis is based on the principle of virtual velocities. The problem is solved in an analytical-numerical way. The particular attention has been paid to the influence of the strain-hardening of the material after yielding upon the collapse structural behaviour and also to the influence of cross-section shape and dimensions on the character of collapse. The upper-bound estimation of the load-carrying capacity of analysed thin-walled sections by combining results of non-linear, elastic post-buckling analysis with the results of plastic mechanism analysis is carried out. Results are presented in diagrams showing post-failure curves as well as curves representing structural behaviour in the whole range of loading up to and beyond the ultimate load. Some results are compared with experimental results and those obtained from FE analysis. A comparison of lower- and upper-bound estimation of the load-carrying capacity is discussed and illustrated in diagrams. Conclusions dealing with the influence of strain-hardening phenomenon displayed by the material upon the load-carrying capacity and collapse behaviour of examined sections are derived. Also conclusions concerning different upper- and lower-bound estimations of the load-carrying capacity of analysed sections are presented.
机译:本文致力于薄壁梁和柱(包括薄壁冷弯型材)的承载力和破坏后行为方面的最新研究成果。它处理弯曲时不同横截面的箱形截面大梁(管)的极限载荷和坍塌,并处理唇形和平面通道截面的梁柱。本文介绍了这些薄壁截面的破坏和倒塌行为的塑性机理的理论分析和实验研究。通常,对近年来获得的结果的简短回顾先于TUL材料与结构强度部获得的结果。使用考虑到构件材料的应变硬化的解决方案的目的采用的硬塑性理论解决了破坏后行为的问题。在实验研究的基础上,针对不同的断面建立了塑性破坏机理的理论模型。理论分析基于虚拟速度原理。该问题以解析数字方式解决。尤其要注意屈服后材料的应变硬化对塌陷结构行为的影响,以及横截面形状和尺寸对塌陷特性的影响。通过将非线性弹性后屈曲分析结果与塑性机理分析结果相结合,对所分析薄壁截面的承载能力进行了上限估计。结果以图表形式显示,这些图表显示了破坏后的曲线以及代表在最大载荷和最终载荷之外的整个载荷范围内的结构行为的曲线。将一些结果与实验结果以及通过有限元分析获得的结果进行比较。在图表中讨论并说明了负载能力的上下限估计的比较。得出了有关材料所表现出的应变硬化现象对被测截面的承载能力和塌陷行为的影响的结论。还提出了有关分析截面的承载能力的不同上限和下限估计的结论。

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