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Buckling of cylindrical stainless-steel tubes subjected to external pressure at extremely high temperatures

机译:在极高的温度下屈曲的圆柱形不锈钢管的圆柱形不锈钢管

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摘要

This study aims to experimentally investigate the buckling behaviors of stainless steel cylindrical tubes subjected to external pressure at extremely high temperatures. Buckling experiments were conducted on specimens of two different buckling modes for a wide range of pressures, specifically, from 200 to 1000 kPa in gauge pressure. The buckling temperature was measured as a function of the external pressure to examine the relationship between the buckling temperature and the external pressure. Moreover, the effect of the tube dimension (radius-to-thickness ratio) on the buckling temperature was investigated for a wide range of radius-to-thickness ratios, specifically, from 10 to 56. The buckling temperature was proportional to the external pressure and to the radius-to-thickness ratio. The measured buckling temperatures were compared with the theoretical predictions obtained from several conventional buckling models. The difference in the buckling temperatures between the experimental results and the theoretical predictions was discussed by considering the creep effect, geometrical imperfections, and a temperature dependent material property. Additionally, the buckling deformation of the stainless steel tube columns was recorded with a high-speed camera.
机译:本研究旨在通过在极高的温度下通过实验研究不锈钢圆柱管的屈曲行为。在两种不同屈曲模式的标本上进行屈曲实验,具体地,特别是从200至1000kPa的压力压力下进行。用外部压力测量屈​​曲温度以检查屈曲温度与外部压力之间的关系。此外,研究管尺寸(半径到厚度比)对屈曲温度的效果进行了宽范围的半径到厚度比,特别是10至56.屈曲温度与外部压力成比例并向半径到厚度比。将测量的屈曲温度与从几种常规屈曲模型获得的理论预测进行了比较。通过考虑蠕变效应,几何缺陷和温度依赖性材料性能,讨论了实验结果与理论预测之间的屈曲温度的差异。另外,用高速相机记录不锈钢管柱的屈曲变形。

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