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Finite element modelling of composite cold-formed steel flooring systems

机译:复合材料冷弯钢地板系统的有限元建模

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The findings from a numerical investigation into the degree of composite action that may be mobilised within floor systems comprising cold-formed steel joists and wood-based particle boards are presented herein. Finite element models have been developed, simulating all the components of the examined systems, as well as the interaction between them. The models include initial geometric imperfections, the load-slip response of the fasteners employed to achieve the shear connection as well as both geometric and material nonlinearities. The developed models were first validated against 12 physical tests reported in the literature, which showed them to be capable of accurately capturing the load-deformation curves and failure modes exhibited by the tested specimens. Parametric studies were then performed to examine the influence of key parameters on the structural behaviour of these systems, including the depth and thickness of the cold-formed steel section, as well as the spacing of the employed fasteners; in total, about 100 systems have been examined. Significant benefits in terms of structural response have been identified from the presented numerical study as a result of the mobilisation of composite action; for the systems investigated, which were of typical, practical proportions, up to 140% increases in moment capacity and 40% increases in stiffness were found. The presented research reveals the substantial gains in structural performance and the influence of the key governing parameters for this novel form of composite construction.
机译:本文介绍了对可在包括冷弯型钢托梁和木基刨花板的地板系统内移动的复合作用程度进行数值研究的结果。已经开发出了有限元模型,可以模拟所检查系统的所有组件以及它们之间的相互作用。该模型包括初始几何缺陷,用于实现剪切连接的紧固件的载荷-滑动响应以及几何和材料非线性。首先,针对文献报道的12项物理测试对开发的模型进行了验证,这表明它们能够准确捕获测试样本所表现出的载荷-变形曲线和破坏模式。然后进行参数研究,以检查关键参数对这些系统的结构性能的影响,包括冷弯型钢的深度和厚度以及所用紧固件的间距。总共检查了大约100个系统。由于采取了综合行动,从提出的数值研究中已经确认出在结构反应方面的重大益处。对于所研究的系统,这些系统具有典型的实际应用比例,其力矩能力提高了140%,刚度提高了40%。提出的研究揭示了这种新型形式的复合结构在结构性能上的实质性进步以及关键控制参数的影响。

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