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Simplified P-M interaction curve model for reinforced concrete columns exposed to standard fire

机译:标准火灾下钢筋混凝土柱的简化P-M相互作用曲线模型

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摘要

In the authors' previous study, an axial force-flexural moment (P-M) interaction curve model was proposed to evaluate fire-resisting performances of reinforced concrete (RC) column members. The proposed method appeared to properly consider the axial and flexural strength degradations including the secondary moment effects in RC columns due to fire damage. However, the detailed P-M interaction curve model proposed in the authors' previous study requires somewhat complex computational procedures and iterative calculations, which makes it difficult to be used for practical design in its current form. Thus, the aim of this study was to develop a simplified P-M interaction curve model of RC columns exposed to fire considering the effects of fire damage on the material performances and magnitudes of secondary moments. The simplified P-M interaction model proposed in this study was verified using 66 column fire test results collected from literature, and the verification results showed that the proposed simplified method can provide an adequate analysis accuracy of the failure loads and fire-resisting times of the RC column specimens.
机译:在作者先前的研究中,提出了一个轴向力-挠性弯矩(P-M)相互作用曲线模型来评估钢筋混凝土(RC)柱构件的耐火性能。所提出的方法似乎适当地考虑了由于火灾造成的钢筋混凝土柱的轴向和抗弯强度退化,包括次级力矩效应。然而,作者先前研究中提出的详细的P-M相互作用曲线模型需要一些复杂的计算程序和迭代计算,这使得它很难以当前形式用于实际设计。因此,本研究的目的是考虑火灾破坏对材料性能和二次力矩大小的影响,建立暴露于火灾的钢筋混凝土柱的简化P-M相互作用曲线模型。利用66篇文献的耐火试验结果验证了本研究提出的简化的PM相互作用模型,验证结果表明,所提出的简化方法能够为钢筋混凝土柱的破坏荷载和耐火时间提供足够的分析精度。标本。

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