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Seismic Performance Evaluation of Cold-Formed Steel Shear Walls Using Corrugated Steel Sheathing

机译:波纹钢护套冷弯型钢剪力墙抗震性能评估

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Cold-formed steel shear wall with corrugated sheet steel sheathing is a newly proposed lateral force resisting system from recent research work. The advantages of noncombustibility, high shear strength and high shear stiffness enable this new wall system to be a feasible solution for low-and midrise construction at high wind and seismic zones. The design provisions for this new type of shear wall have not been developed in current design specifications. The initial phase of this research project involved the displacement-based testing of bearing wall and shear wall specimens under combined lateral and gravity loading. The phase two research, presented here, includes the nonlinear finite element analysis and the performance evaluation of a set of light framed steel buildings using the corrugated sheet sheathed shear walls. Incremental dynamic analyses were performed on six archetype buildings and seismic performance assessment was evaluated. The results verify a set of seismic performance factors (R = C-d = 6.5 and Omega = 3.0) for the corrugated sheet sheathed shear wall systems. (C) 2017 American Society of Civil Engineers.
机译:波纹钢板护套冷弯型钢剪力墙是最近研究工作中新提出的一种侧向抗力系统。不燃性,高抗剪强度和高抗剪刚度的优点使这种新型墙体系统成为高风和地震带中低层建筑的可行解决方案。在当前的设计规范中尚未针对这种新型剪力墙制定设计规定。该研究项目的初始阶段涉及在侧向和重力共同作用下的承重墙和剪力墙试样的基于位移的测试。这里介绍的第二阶段研究包括非线性有限元分析和一组使用波纹板护套剪力墙的轻型钢结构房屋的性能评估。对六个原型建筑进行了增量动力分析,并评估了抗震性能。结果验证了瓦楞纸板护套剪力墙系统的一组地震性能因子(R = C-d = 6.5和Omega = 3.0)。 (C)2017年美国土木工程师学会。

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