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Creep effect on buckling of axially restrained steel columns in real fires

机译:真实火灾中蠕变对轴向约束钢柱屈曲的影响

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摘要

At present, Harmathy creep model is used in most fire resistance analysis, which explicitly consider creep. Harmathy creep model only predicts creep strains with acceptable accuracy for the case of constant stresses, but becomes invalid for the case of variable stresses. For the case of axially restrained steel columns subjected to fire, the fire induced stresses vary considerably and rapidly with time and temperature. In this paper, the effect of creep on the buckling behavior of axially restrained steel columns in real fires has been investigated. A creep model in ANSYS, which is capable of predicting creep strain regardless of any coupling between time and either stress or temperature of steel, is used to predict creep strains. The results for buckling tempera tures and axial deformations, predicted with and without considering creep in numerical simulations, are compared. Both fast and slow fires are considered. The study found that for axially restrained steel columns in slow fires, considering creep gives higher buckling temperatures than those not considering creep; and for axially restrained steel columns in fast fires, considering creep might give higher or lower buckling temper atures than those not considering creep.
机译:目前,大多数耐火性分析中都使用Harmathy蠕变模型,其中明确考虑了蠕变。 Harmathy蠕变模型仅在恒定应力情况下以可接受的精度预测蠕变应变,而对于可变应力情况则无效。对于受到火灾的轴向约束钢柱,火灾引起的应力会随时间和温度而迅速变化。本文研究了蠕变对实际火灾中轴向约束钢柱屈曲行为的影响。 ANSYS中的蠕变模型可以预测蠕变应变,而不管时间与钢的应力或温度之间的任何耦合如何,都可以用来预测蠕变应变。比较了在温度模拟和不考虑蠕变的情况下预测的屈曲温度和轴向变形的结果。快速和慢速射击都被考虑。研究发现,对于缓慢燃烧中的轴向约束钢柱,考虑蠕变会比不考虑蠕变的屈曲温度更高。对于急火中的轴向约束钢柱,考虑蠕变可能会比不考虑蠕变的屈曲温度更高或更低。

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