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Steel Columns Subjected to Thermal Gradients from Fire Loading: Experimental Evaluation

机译:火荷载作用下受温度梯度影响的钢柱:实验评估

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This paper presents the behavior of axially loaded steel columns subjected to thermal gradients through their cross sections. Experimental tests were conducted on full-scale wide-flange steel columns with W8 x 35 and W14 x 53 sections made from standard grade 50 steel. The experimental investigations confirmed that variations in fire protection thickness had significant influence on the thermal gradient developing through the steel cross section. Thermal gradient along the flanges caused bowing of column specimens toward the hotter side. Thermal bowing introduced second-order moments and adversely affected stability, leading to failure of column specimens by inelastic flexural column buckling. The experimental behavior and results were compared with those obtained from detailed nonlinear finite-element analyses of the tested specimens. These nonlinear finite-element models utilized standard (temperature-dependent) material properties, and reasonably predicted the axial load-temperature-deformation behavior and failure temperature of column specimens subjected to nonuniform heating. (c) 2016 American Society of Civil Engineers.
机译:本文介绍了承受轴向载荷的钢柱在截面上受热梯度影响的行为。实验是在标准尺寸为50的钢制成的W8 x 35和W14 x 53型截面的全尺寸宽法兰钢柱上进行的。实验研究证实,防火厚度的变化对贯穿钢横截面的热梯度有显着影响。沿法兰的热梯度导致柱状样品向较热的一侧弯曲。热屈曲会引入二阶矩,从而对稳定性产生不利影响,导致柱标本因无弹性挠曲柱屈曲而失效。将实验行为和结果与从测试样本的详细非线性有限元分析获得的结果进行比较。这些非线性有限元模型利用了标准的(取决于温度的)材料特性,并合理地预测了承受非均匀加热的圆柱试样的轴向载荷-温度-变形行为和破坏温度。 (c)2016年美国土木工程师学会。

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