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An approach for evaluating fire resistance of steel beams considering creep effect

机译:考虑蠕变效应评估钢梁耐火性的方法

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Most of previous studies on fire resistance of restrained steel beams neglected creep effect due to lack of suitable creep model. This paper presents a finite element model (FEM) for accessing the fire resistance of restrained high strength Q460 steel beams by taking high temperature Norton creep model of steel into consideration. The validation of the established model is verified by comparing the axial force and deflection of restrained beams obtained by finite element analysis with test results. In order to explore the creep effect on fire response of restrained Q460 steel beams, the thermal axial force and deflection of the beams are also analyzed excluding creep effect. Results from comparison infer that creep plays a crucial role in fire response of restrained steel beam and neglecting the effect of creep may leads to unsafe design. A simplified design approach to determine the moment capacity of restrained Q460 steel beams is proposed based on the results of parametric studies by considering creep effect.
机译:以前关于受限制的钢梁的耐火性研究的大多数研究由于缺乏合适的蠕变模型而忽略了蠕变效应。本文通过采用钢的高温Norton蠕变模型考虑,提出了一种有限元模型(FEM),用于通过采用高温Norton蠕变模型来获得抑制的高强度Q460钢梁的耐热性Q460钢梁。通过将通过有限元分析获得的受限制梁的轴向力和偏转进行比较了测试结果,通过比较通过测试结果来验证所建立模型的验证。为了探讨受限制Q460钢梁的火灾响应的蠕变效果,还分析了梁的热轴力和偏转,不包括蠕变效果。结果从比较推断,蠕变在受限制的钢梁的火灾响应中发挥着至关重要的作用,忽视蠕变的效果可能导致不安全的设计。通过考虑蠕变效应,提出了一种基于参数化研究的Q460钢梁的力矩容量来确定Q460钢梁的力矩容量的简化设计方法。

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