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Effective stiffness of steel plate-concrete composite shear wall structures under normal status

机译:钢板混凝土复合剪力墙结构的有效刚度

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Shear walls are the primary lateral-load carrying elements in tall buildings. The steel plate-concrete composite shear walls have good advantage in mechanical properties for the combined effect of two kinds of materials. It composes two steel plates with studs inside, side columns made of steel tube and an infill of concrete. This paper focuses on the effective stiffness and the ultimate loading capacity of the composite shear walls. Many design practices currently deal with shear stiffness by employing a stiffness reduction factor. In this paper however, a model called PCTM (Plane Combination Truss Model) is built for effective shear stiffness of the composite wall based on the theory of fixed angle truss model. The formula for calculating the effective shear stiffness of the composite shear wall is derived based on the model. A numerical model for elasto-plastic analysis of the composite wall is built to find the key factors for the effective flexural stiffness subjected to axial force and bending moment, the simplified design formulae for which are obtained based on the parameter analysis. The effective stiffness is obtained by combining the flexural stiffness and the shear stiffness. The predictions of effective stiffness correlates well with experimental results of a series of composite shear wall specimens.
机译:剪力墙是高层建筑中的主要横向载荷元件。钢板 - 混凝土复合剪力墙在机械性能方面具有良好的优势,用于两种材料的组合效果。它组成两个带有螺柱内部的钢板,由钢管制成的侧柱和混凝土含有夹具。本文重点介绍了复合剪力墙的有效刚度和最终的负载能力。目前通过采用刚度减少因子来处理剪切刚度的许多设计实践。然而,在本文中,基于固定角度桁架模型理论,为称为PCTM(平面组合桁架模型)的模型为复合墙的有效剪切刚度。用于计算复合剪切壁的有效剪切刚度的公式基于该模型推导出来。建立了复合墙体弹性塑性分析的数值模型,以找到对轴向力和弯矩的有效弯曲刚度的关键因素,其简化的设计公式基于参数分析获得。通过组合弯曲刚度和剪切刚度来获得有效刚度。有效刚度的预测与一系列复合剪切壁样本的实验结果相比好。

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