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Advanced modeling of cold-formed steel walls under fire

机译:火灾下冷弯钢墙的高级建模

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This paper discusses an advanced finite element model able to simulate the structural response of cold-formed steel walls during standard fire tests. The model includes experimental thermo-mechanical properties of materials, geometric imperfections, and temperature distributions on studs and sheathing boards. The model is capable of reasonably predicting the thermal bowing of walls, and estimating the shape, size and amount of joint openings between gypsum boards over time of fire exposure. Numerical results validated with experimental data indicate that the maximum out-of-plane displacements due to thermal gradients occur near the wall mid-height. Early in the heating process, joint openings develop on the exposed side of walls due to thermal bowing and contraction of gypsum boards at elevated temperatures, potentially altering the heat transfer and affecting the fire resistance of the entire system. Future work aims to utilize high fidelity modeling to study the response of load bearing cold-formed steel systems subjected to fire, and optimize their fire resistance.
机译:本文讨论了一种先进的有限元模型,该模型能够模拟标准耐火试验期间冷弯型钢墙的结构响应。该模型包括材料的实验热机械性能,几何缺陷以及双头螺栓和护套板上的温度分布。该模型能够合理地预测墙壁的热弯曲,并估计暴露于火中的石膏板之间的缝隙的形状,大小和数量。用实验数据验证的数值结果表明,由于热梯度而引起的最大平面外位移出现在壁的中间高度附近。在加热过程的早期,由于石膏板在高温下的热弯曲和收缩,在壁的裸露侧面上会形成接缝开口,这有可能改变传热并影响整个系统的耐火性。未来的工作旨在利用高逼真度模型来研究承受火灾的承重冷弯型钢系统的响应,并优化其耐火性。

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