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Experimental characterization of steel tubular beam-columns resistance by means of the Overall Interaction Concept

机译:整体相互作用概念对钢管梁柱抗力的实验表征

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This paper presents a series of twelve buckling tests on rectangular and circular hollow section beam-column of nominal steel grade S355. The columns were fabricated by either the hot-rolling or the cold-forming process, and were subjected to different load cases through the application of eccentric compression: mono-axial bending (M-y) or bi-axial bending (M-y + M-z combined with axial compression (N). Preliminary measurements of cross-section geometry, material properties, geometrical imperfections, residual stresses as well as stub column tests are also reported in this paper. The (imperfect) initial geometry was measured along the whole column by means of two different procedures; the first method relied on the use of a set of equally spaced Linear Variable Displacement Transducers (LVDTs) displaced on each specimen's plates. The second method consisted in scanning the specimen's plates by means of a laser Tracker AT401. Residual stresses were also determined experimentally, and the sectioning technique was classically used to record the deformations of the released material; these results have been compared to measurements taken with electrical strain gauges. Finally, beam column buckling strengths were plotted in an O.I.C.-type format, and complemented with an extensive experimental data collected from the literature that comprised various load cases, fabrication processes, yield strengths, cross-sections shapes, and elements' lengths. The O.I.C. approach was shown to adequately capture the behavior of hollow section beam-columns in a straightforward and simple manner, and its potential for efficiently and rationally predicting carrying capacities was evidenced.
机译:本文介绍了在标称钢号为S355的矩形和圆形空心截面梁柱上进行的十二次屈曲测试。圆柱是通过热轧或冷成型工艺制造的,并且通过施加偏心压缩而承受不同的载荷工况:单轴弯曲(My)或双轴弯曲(My + Mz与轴向结合本文还报道了截面几何形状,材料特性,几何缺陷,残余应力以及短柱测试的初步测量结果,(不完美的)初始几何形状是通过两次测量沿整列测量的不同的程序;第一种方法依靠使用在每个样品板上位移的一组等距线性可变位移传感器(LVDT);第二种方法包括使用激光跟踪仪AT401扫描样品板。通过实验确定,并且经典地使用切片技术来记录释放材料的变形;这些结果已与measu进行了比较用电应变计进行的记录。最后,以O.I.C.型格式绘制梁柱的屈曲强度,并补充了从文献中收集的大量实验数据,这些数据包括各种载荷工况,制造工艺,屈服强度,横截面形状和元件长度。 O.I.C.结果表明,该方法能够以一种简单明了的方式充分捕获空心截面梁柱的行为,并证明了其有效,合理地预测承载能力的潜力。

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