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Modelling of Steel Creep at High Temperatures Using an Implicit Creep Model

机译:利用隐式蠕变模型在高温下钢蠕变的建模

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The paper presents the numerical procedure for modelling the behaviour of steel structures at high temperatures using a newly developed implicit creep model. This implicit creep model uses the calculated creep strains to modify the material stress-strain curves, thus implicitly taking into account the effect of the developed creep strain. The newly calculated stress-strain curves are modified by stretching the initial temperature-dependent stress-strain curves using the calculated values of the creep strain which depend on the level of temperature and stress that the section of structure is being exposed to during fire. The implicit numerical procedure has been implemented in a previously developed numerical model for predicting the behaviour of structures under fire. In order to test the validity of the newly developed implicit creep model, an in-house fire experiment was performed. Results of the experiment have shown a good agreement with the model predictions indicating the validity of the developed implicit numerical procedure.
机译:本文介绍了使用新开发的隐式蠕变模型在高温下建模钢结构行为的数值方法。这种隐式蠕变模型使用计算的蠕变菌株来修改材料应力 - 应变曲线,因此隐含地考虑到显影蠕变应变的效果。通过使用蠕变应变的计算值延伸初始温度依赖性应力 - 应变曲线来修改新计算的应力 - 应变曲线,这取决于温度和应力水平,即结构部分在火灾中暴露。隐式数值过程已经在先前开发的数字模型中实现,用于预测在火灾中的结构行为。为了测试新开发的隐式蠕变模型的有效性,进行了内部的消防实验。实验结果表明了与模型预测吻合吻合良好,这表明发达的隐式数值程序的有效性。

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