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Bending resistance of steel beams with corrugated web under fully developed fire

机译:在完全发射的火灾下用瓦楞网弯曲钢梁的抗性

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摘要

More accurate design algorithm helpful in bending resistance evaluation of steel beams with corrugated web exposed to fully developed fire is presented and discussed in detail. The condition of fire resistance limit state is proposed to be determined by the interactive formula based on the consideration of biaxial bending in which the transverse out-of-plane bending phenomenon is the spatial effect of in-plane shear. Such an influence, usually neglected in formal models dealing with the persistent design situation, can become more significant under fire conditions, when the steel yield point decreases as a consequence of the flanges temperature growth. Dependence between the material temperature and the global instability factors is considered in the methodology proposed by the authors, especially with relation to the assessment of the adequate values of lateral – torsional buckling coefficient as well as of flexural transverse buckling coefficient specified for the compressed flange. The conclusive safety condition should be supplemented by the additional interactive component in which the influence of the axial compression force is expressed, in the case when such internal force is induced in a considered beam as a result of thermal strains constrainment.
机译:更精确的设计算法有助于钢梁弯曲性评估,钢梁与暴露于完全发育的火灾的波纹纤维网进行详细讨论。提出了基于双轴弯曲的互动式的交互式公式来确定耐火性限制状态的条件,其中横向平面外弯曲现象是面内剪切的空间效果。这种影响,通常忽略了处理持续设计情况的正式模型,在火灾条件下可能变得更加显着,当钢屈服点因凸缘温度生长而降低。在作者提出的方法中考虑了材料温度和全局不稳定性因子之间的依赖性,特别是与评估横向屈曲系数的足够值以及为压缩法兰指定的弯曲横向屈曲系数而言。在由于热菌株被约束的结果,在当被认为是被考虑的光束中诱导这种内力时,应通过附加的相互动物成分来补充结论的安全性条件。

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