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Structural fire performance of axially and rotationally restrained stainless steel columns

机译:轴向和旋转约束不锈钢柱的结构防火性能

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This paper describes a step improvement in the numerical modelling of the structural response of axially and rotationally restrained stainless steel columns at elevated temperatures. The developed finite element models form a sequentially coupled thermal stress analysis that comprises a heat transfer model, a buckling analysis, and a geometrically and materially non-linear stress analysis. The proposed finite element methodology is more sophisticated than any other reported attempts to model the fire response of structural stainless steel that take into account influence of adjoining members. A high degree of predictive accuracy is achieved, with the developed models on average predicting the failure temperatures and times of test specimens reported in the literature within 2% and 6%, respectively. A parametric study is performed that investigates the influence of axial restraint stiffness, rotational restraint stiffness, column slenderness and load level. It is shown that while increasing axial restraint stiffness reduces the failure temperature of stainless steel columns in fire, increasing rotational restraint stiffness has the opposite effect. The methodology and results of this paper will provide both a tool for practice and a suite of results that can be extended to develop the existing and currently limited codified approaches to structural stainless steel design.
机译:本文描述了在高温下轴向和旋转受约束的不锈钢柱的结构响应数值模型中的一步改进。所开发的有限元模型形成了顺序耦合的热应力分析,包括热传递模型,屈曲分析以及几何和材料非线性应力分析。拟议的有限元方法比任何其他已报道的考虑到相邻构件影响的结构不锈钢的火灾响应建模方法都更为复杂。实现了高度的预测准确性,使用已开发的模型平均预测文献中报道的试样的破坏温度和时间分别在2%和6%之内。进行了参数研究,以研究轴向约束刚度,旋转约束刚度,立柱细长度和载荷水平的影响。结果表明,增加轴向约束刚度可以降低火灾中不锈钢柱的破坏温度,而增加旋转约束刚度则具有相反的效果。本文的方法论和结果将提供实践工具和一系列结果,可以扩展以开发现有的和当前有限的结构不锈钢设计的编纂方法。

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