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Numerical and experimental investigation of anchor channels subjected to shear load in composite slabs with profiled steel decking

机译:复合板剪切载荷锚杆锚杆钢板的数值和实验研究

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Anchor channels are a type of cast-in place anchor that are well suited for supporting curtain walls and other applications in commercial construction because they provide flexibility when positioning a fixture. For curtain wall applications, anchor channels are often installed close to the edge of a floor slab. Modern high-rise buildings commonly use composite slabs consisting of profiled steel decking with an in-situ cast concrete topping. The specific geometry of the composite slab is a major factor to consider when designing anchor channel connections. Since there are currently no guidelines or investigations available on the topic, the design is done primarily based on engineering judgment. The aim of the present research is to investigate how the geometry of composite slabs affects the concrete edge breakout capacity of anchor channels loaded in shear. An extensive numerical parametric study and an experimental campaign were carried out to evaluate the difference in the shear capacity between composite slabs and equivalent plain concrete slabs with the same overall thickness. In the numerical study the 3D nonlinear FE code based on the microplane model was employed. Based on the numerical results, a new design approach is proposed for different positions of anchor channels in composite slabs.
机译:锚通道是一种铸造锚点,非常适合于在商业结构中支撑帘幕壁和其他应用,因为它们在定位夹具时提供柔韧性。对于窗帘墙应用,锚通道通常安装在底板的边缘靠近。现代高层建筑通常使用复合板块,由钢板装有型钢板,配有原位铸造混凝土顶部。复合板的特定几何形状是设计锚通信道连接时的主要因素。由于目前没有在该主题上提供指导方针或调查,因此该设计主要基于工程判断。本研究的目的是研究复合板的几何形状如何影响剪切中装载的锚通道的混凝土边缘断裂能力。进行了广泛的数值参数研究和实验活动,以评估复合板坯与相同总厚度相同厚度的相同普通混凝土板之间的剪切容量的差异。在数值研究中,采用了基于微板模型的3D非线性Fe代码。基于数值结果,提出了一种新的设计方法,用于复合板中的锚通道的不同位置。

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