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Numerical Evaluation of the Behavior of Steel Frames with Gypsum Board Infill Walls

机译:石膏板填充墙钢框架性能的数值评估

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In this paper, the behavior of steel frames with gypsum board infill walls is studied through finite element simulation. For this purpose, a typical steel frame with infill wall which had been previously tested is considered as a benchmark model. The accuracy of a numerical model is verified by calibrating the results of the finite element simulation against those of a corresponding experimental specimen. In the next step, a parametric study is performed on four models in order to study the effects of gypsum board thickness, inclusion of fibers as reinforcement in the infill wall, and local strengthening of the peripheral regions of the infill wall. Each of these factors is related to considerable performance improvement such as strength and ductility of the models. It is observed that adding fibers to the infill wall leads to increase in the strength and ductility of the models up to 3.2 and 6.3 times, respectively. Doubling the thickness of the infill wall results in an increase of 6.7 and 3.3 times in strength and stiffness, respectively; however, this modification causes a significant decrease in the ductility of the infilled frames. Negligible improvement in strength and ductility is achieved through local strengthening of the peripheral regions of the infill walls, whereas it leads to a 30% increase in the stiffness of the models.
机译:本文通过有限元模拟研究了石膏板填充墙钢框架的性能。为此,以前经过测试的具有填充墙的典型钢框架被视为基准模型。通过将有限元模拟的结果与相应的实验样本的结果进行校准,可以验证数值模型的准确性。在下一步中,对四个模型进行参数研究,以研究石膏板厚度,填充纤维作为填充壁的增强材料以及填充壁外围区域的局部增强的影响。这些因素中的每一个都与模型的强度和延展性等相当大的性能改进有关。可以看出,将纤维添加到填充壁会导致模型的强度和延展性分别增加3.2倍和6.3倍。将填充壁的厚度加倍会使强度和刚度分别增加6.7和3.3倍;然而,这种修改导致填充框架的延展性显着降低。通过局部增强填充壁的外围区域可以实现强度和延展性的微不足道的改善,而这导致模型的刚度提高了30%。

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