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An experimental investigation on the seismic behavior of cold-formed steel walls sheathed by thin steel plates

机译:薄钢板包裹冷弯型钢墙抗震性能的试验研究

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摘要

The use of cold-formed steel (CFS) frames has grown extensively in recent years, particularly in the earthquake-prone regions. However, the behavior of lateral resisting systems in CFS structures under seismic loads has not been scrutinized in detail. Towards this, an experimental investigation has been conducted on cold formed steel frames sheathed by thin galvanized steel plates, the results of which are presented here. The experiments involve 24 full-scale steel plated walls tested under cyclic loading with different configurations of studs and screws. Of particular interest were the specimens' maximum lateral load capacity and the load-deformation behavior as well as a rational estimation of the seismic response modification factor, R. The study also evaluates the failure modes of the systems. The main factors contributing to the ductile response of these shear walls are also discussed in order to suggest improvements so that the walls respond plastically with a significant drift and without any risk of brittle failure.
机译:近年来,特别是在地震多发地区,冷弯型钢(CFS)框架的使用已广泛增加。但是,尚未详细研究地震荷载作用下CFS结构中的侧向抵抗系统的行为。为此,已经对用薄镀锌钢板包裹的冷成型钢框架进行了实验研究,其结果在此处介绍。实验涉及24个全尺寸的钢板墙,这些墙在循环载荷下使用不同配置的双头螺栓和螺钉进行了测试。尤其值得关注的是标本的最大侧向载荷能力和载荷-变形行为,以及对地震响应修正系数R的合理估计。该研究还评估了系统的失效模式。为了建议改进,还讨论了导致这些剪力墙延性响应的主要因素,以便使剪力墙产生塑性响应,并具有明显的漂移,而没有脆性破坏的风险。

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