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The Buckling and Post-Buckling of Steel C-Columns in Elevated Temperature

机译:高温下C型钢的屈曲和后屈曲

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摘要

This work deals with the investigation of a steel thin-walled C-column subjected to compression due to temperature increase. These experimental studies of the compressed columns in post-buckling state were conducted to determine their load-carrying capacity. To ensure appropriate supports and keeping of columns, plates with grooves were constructed. The tests of the columns’ compression for different preloads were carried out. By comparing the experiment results, numerical calculations based on the finite element method (FEM) and the semi-analytical method (SAM) of solution were performed. The computations were executed with the use of full material characteristics with consideration of large strains and deflections. Furthermore, while observing the deformation of columns, a non-contact Digital Correlation ARAMIS system was employed whose calculated results of deformations are very close to the results of the numerical method. The paper revealed that maximum recorded loads under temperature rise are comparable regardless of a value of initial load. A good correlation in results between used methods was achieved. The main goal of the present work was to assess of behavior of thin-walled compressed steel columns in a temperature-controlled environment till their full damage.
机译:这项工作涉及对由于温度升高而受到压缩的钢薄壁C柱的研究。对屈曲后状态的压缩柱进行了这些实验研究,以确定它们的承载能力。为了确保适当的支撑和色谱柱的支撑,构造了带有凹槽的板。进行了针对不同预紧力的柱压缩测试。通过比较实验结果,进行了基于有限元法(FEM)和半解析法(SAM)的数值计算。考虑到大的应变和挠度,在充分利用材料特性的情况下进行了计算。此外,在观察柱变形的同时,采用了非接触数字相关ARAMIS系统,其变形的计算结果与数值方法的结果非常接近。该论文表明,不管初始载荷值如何,在温度升高下记录的最大载荷是可比的。所用方法之间的结果之间具有良好的相关性。本工作的主要目的是评估在受控温度下薄壁压缩钢柱的性能,直到完全损坏为止。

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