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Numerical Modelling of Double-Steel Plate Composite Shear Walls

机译:双钢板复合剪力墙的数值模拟

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Double-steel plate concrete composite shear walls are being used for nuclear plants and high-rise buildings. They consist of thick concrete walls, exterior steel faceplates serving as reinforcement and shear connectors, which guarantee the composite action between the two different materials. Several researchers have used the Finite Element Method to investigate the behaviour of double-steel plate concrete walls. The majority of them model every element explicitly leading to a rather time-consuming solution, which cannot be easily used for design purposes. In the present paper, the main objective is the introduction of a three-dimensional finite element model, which can efficiently predict the overall performance of a double-steel plate concrete wall in terms of accuracy and time saving. At first, empirical formulations and design relations established in current design codes for shear connectors are evaluated. Then, a simplified finite element model is used to investigate the nonlinear response of composite walls. The developed model is validated using results from tests reported in the literature in terms of axial compression and monotonic, cyclic in-plane shear loading. Several finite element modelling issues related to potential convergence problems, loading strategies and computer efficiency are also discussed. The accuracy and simplicity of the proposed model make it suitable for further numerical studies on the shear connection behaviour at the steel-concrete interface.
机译:双钢板混凝土复合剪力墙被用于核电站和高层建筑。它们由厚实的混凝土墙,用作加固和剪切连接器的外部钢面板组成,可确保两种不同材料之间的复合作用。一些研究人员已经使用有限元方法来研究双钢板混凝土墙的性能。他们中的大多数人对每个元素都进行了建模,从而明确地导致了一个相当耗时的解决方案,该解决方案不能轻易用于设计目的。本文的主要目的是引入三维有限元模型,该模型可以从准确性和节省时间方面有效地预测双钢板混凝土墙的整体性能。首先,评估在剪切连接器的当前设计规范中建立的经验公式和设计关系。然后,使用简化的有限元模型来研究复合墙的非线性响应。使用文献中报道的试验结果对轴向压缩和单调循环面内剪切载荷进行验证,可以验证所开发的模型。还讨论了与潜在收敛问题,加载策略和计算机效率有关的几个有限元建模问题。该模型的准确性和简单性使其适用于钢-混凝土界面处的剪切连接行为的进一步数值研究。

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