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Strength and stiffness determination of shear wall panels in cold-formed steel framing

机译:冷弯型钢框架中剪力墙板的强度和刚度确定

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摘要

Shear wall panels, as the one of the primary lateral load resisting elements, have been extensively used in lightweight framing of low-and mid-rise residential construction, particularly in seismic applications. In current practice, lateral strengths of shear wall panels with cold-formed steel framing are primarily determined by tests, owing to the lack of applicable analytical methods. Meanwhile, the use of numerical methods such as the finite element method has rarely been employed in the design practice to determine the lateral strength of shear wall panels due to the extensive amount of computational effort associated with the modelling. Presented in this paper is an analytical method to determine the ultimate lateral strength of the shear wall panel and its associated displacement. The method takes into account the factors that primarily affect the behaviour and the strength of the shear wall panel, such as material properties, geometrical dimensions and construction details. Lateral strengths obtained from the proposed method for shear wall panels with different sheathing materials and steel stud thicknesses, sizes and spacing of sheathing-to-stud fasteners were compared with those of recent experimental investigations. The comparison demonstrates that the predicted results are in good agreement with those of the tests. Therefore, it is recommended that the proposed method be used in engineering practice.
机译:剪力墙面板作为主要的横向抗力元件之一,已广泛用于中低层住宅建筑的轻型框架中,特别是在地震应用中。在当前的实践中,由于缺乏适用的分析方法,具有冷弯型钢框架的剪力墙面板的侧向强度主要由试验确定。同时,由于与建模相关的大量计算工作,在设计实践中很少使用诸如有限元法之类的数值方法来确定剪力墙板的侧向强度。本文提出了一种确定剪力墙面板的极限横向强度及其相关位移的分析方法。该方法考虑了主要影响剪力墙面板的性能和强度的因素,例如材料特性,几何尺寸和构造细节。从提议的方法获得的剪切强度与不同护套材料和钢钉厚度,护套到钉紧固件的尺寸和间距的横向强度与最近的实验研究进行了比较。比较表明,预测结果与测试结果吻合良好。因此,建议将建议的方法用于工程实践。

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