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Effective Strip Model for Cold-Formed Steel Shear Wall using Steel Sheet Sheathing

机译:钢板护套冷弯钢剪力墙的有效带钢模型

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The cold-formed steel framed shear wall sheathed with steel sheets (CFS-SSSW) is a code approved lateral force resisting system for light-framed buildings. The current design approach for cold-formed steel shear walls in U.S. is based on full-scale tests. The AISI Lateral Design Standard provides nominal shear strength for limited wall configurations. This paper presents an analytical design method - the Effective Strip Method for predicting the nominal strength of CFS-SSSWs for both wind and seismic design. The proposed design approach is based on a tension field action model of the sheathing with additional consideration of the sheathing fastener strength, the fastener spacing, the wall aspect ratio, and the material properties. A total of 142 full scale tests are used to verify the proposed design method and the supporting design equations. It shows that the proposed method has a good agreement with the test results. The Effective Strip Method is an alternate approach to determine the nominal strength of CFS-SSSWs without conducting full-scale shear wall tests.
机译:钢制铠装的冷弯型钢框架剪力墙(CFS-SSSW)是经规范认可的轻型建筑侧向抗力系统。美国目前用于冷弯型钢剪力墙的设计方法是基于全面测试。 AISI横向设计标准为有限的墙体配置提供了标称抗剪强度。本文提出了一种分析设计方法-用于预测CFS-SSSW在风和地震设计中的标称强度的有效带方法。所提出的设计方法基于护套的张力场作用模型,另外考虑了护套的紧固件强度,紧固件的间距,壁长宽比和材料特性。总共142次全面测试用于验证所提出的设计方法和支持的设计方程式。结果表明,所提方法与试验结果吻合良好。有效剥离法是一种无需进行全面的剪力墙测试即可确定CFS-SSSW的标称强度的替代方法。

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