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Fundamental Behavior of Steel Beam-Columns and Columns under Fire Loading: Experimental Evaluation

机译:钢梁柱和柱在火灾下的基本行为:实验评估

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This paper presents the results of experimental investigations conducted to determine the fundamental behavior of steel members under fire loading. A total of eleven full-scale steel members were tested under combined thermal and structural loading. First, five A992 steel beam-columns (W10 x 68) were tested to determine their fundamental moment-curvature responses at elevated temperatures and different axial load levels. The experimental approach involved the use of radiant heating and control equipment to apply the thermal loading, and close-range photogrammetry combined with digital image processing techniques to measure the deformations (curvature) in the heated zone. Next, six A992 steel wide-flange (W8 x 35 and W14 x 53) columns were tested to determine their inelastic buckling behavior and axial load-displacement responses at elevated temperatures. A self-reacting test frame was designed to subject the column specimens to axial loading and heating. The thermal loading was applied by using the same type of radiant heating and control equipment as the beam-column specimens. The measured behaviors (and strengths) of the tested beam-column and columns specimens are presented and then compared with those obtained from detailed 3D finite-element analyses. The experimental investigations showed that the fundamental behavior and strength of steel members is governed mostly by the steel surface temperature, and the strength and stiffness of steel columns decreases significantly with increasing temperatures, particularly in the range from 500-600℃. The elevated temperature behavior of steel members can be predicted reasonably by using detailed 3D finite-element models. These verified models are recommended for conducting analytical parametric studies. The experimental approaches are recommended for evaluating the fire behavior of other structural members and loading conditions.
机译:本文介绍了为确定钢构件在火荷载下的基本行为而进行的实验研究的结果。总共11个全尺寸钢构件在热和结构载荷的共同作用下进行了测试。首先,测试了五个A992钢制梁柱(W10 x 68),以确定它们在高温和不同轴向载荷水平下的基本弯矩曲率响应。实验方法涉及使用辐射加热和控制设备来施加热负荷,以及近距离摄影测量法与数字图像处理技术相结合来测量加热区域中的变形(曲率)。接下来,测试了六根A992钢宽法兰(W8 x 35和W14 x 53)柱,以确定它们在高温下的非弹性屈曲行为和轴向载荷-位移响应。设计了一个自反应式测试架,以对柱试样进行轴向加载和加热。通过使用与梁柱试样相同类型的辐射加热和控制设备施加热载荷。给出了被测梁柱和柱试样的测量行为(和强度),然后与从详细的3D有限元分析获得的结果进行比较。实验研究表明,钢构件的基本行为和强度主要受钢表面温度的影响,钢柱的强度和刚度随温度的升高而显着降低,特别是在500-600℃范围内。通过使用详细的3D有限元模型,可以合理地预测钢构件的高温行为。建议将这些经过验证的模型用于进行分析参数研究。建议使用实验方法来评估其他结构构件的火灾行为和载荷条件。

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