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Practical method for calculating the buckling temperature of the web-post in a cellular steel beam in fire

机译:计算火灾下蜂窝状钢梁中腹板柱屈曲温度的实用方法

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Buckling behaviors of web-posts in a cellular steel beam at elevated temperatures in a fire were studied using the Finite Element Method (FEM) analysis and available analytical models. The buckling temperatures obtained by the analytical models differed greatly to those obtained from the FEM simulation. Among these analytical models, the buckling temperature obtained through the strut model based on BS5950-1 agreed with the FEM result the best. It is more reasonable to take the width of the compression stress band in the web-post as the effective width of the strut. Numerical parametric studies showed that the width of the compression stress band varied with the opening diameter, the opening distance and the web thickness. A simplified method was proposed to calculate the effective width of the strut. The accuracy of the strut model integrating the new effective width was validated against the FEM simulations. The obtained buckling temperature of the web-post using the modified strut model agreed well with the FEM simulation result.
机译:使用有限元方法(FEM)分析和可用的分析模型研究了蜂窝钢梁在高温下在火灾中腹板柱的屈曲行为。通过分析模型获得的屈曲温度与通过FEM模拟获得的屈曲温度差异很大。在这些分析模型中,通过基于BS5950-1的支杆模型获得的屈曲温度与FEM结果最吻合。将腹板支柱中压缩应力带的宽度作为支杆的有效宽度是更合理的。数值参数研究表明,压应力带的宽度随开口直径,开口距离和腹板厚度的变化而变化。提出了一种简化的方法来计算支杆的有效宽度。结合新的有效宽度的支杆模型的准确性已针对FEM仿真进行了验证。使用改进的支撑模型获得的网柱屈曲温度与有限元模拟结果吻合得很好。

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