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A numerical study on seismic performance of strap-braced cold-formed steel shear walls

机译:扎带式冷弯型钢剪力墙抗震性能的数值研究

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This paper presents a non-linear finite element analyses in order to optimize the seismic characteristics of strap-braced cold formed steel shear walls enhanced with brackets in the four interior corners of the wall. The numerical models presented here are verified based on experimental tests considering different structural characteristics including: material nonlinearity, geometrical imperfection, residual stresses and perforations. A comparison between the numerical simulations and the test results shows a good agreement proves that the finite element analysis can be used effectively to predict the ultimate capacity of strap-braced CFS shear panels. A total of 16 models with different variants of bracket length are investigated. Of particular interests were the specimens' maximum lateral load capacity and deformation behavior in addition to a rational estimation of the seismic response modification factor. Preliminary conclusions presented in this paper, refer to the optimum seismic characteristics of strap braced CFS shear walls and the corresponding dimensions and configuration.
机译:本文提出了一个非线性有限元分析,以优化带支撑的冷弯型钢剪力墙的抗震特性,并在壁的四个内角增加了括号。这里提出的数值模型是在考虑不同结构特征的实验测试的基础上进行验证的,这些结构特征包括:材料非线性,几何缺陷,残余应力和穿孔。数值模拟与试验结果的比较表明,良好的一致性证明,有限元分析可以有效地预测带支撑CFS剪力板的极限承载力。总共研究了16种型号,这些型号具有不同的支架长度。除了合理估计地震响应修正系数外,还特别需要注意标本的最大侧向承载能力和变形行为。本文提出的初步结论涉及带状支撑CFS剪力墙的最佳抗震特性以及相应的尺寸和构造。

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