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首页> 外文期刊>Journal of Constructional Steel Research >Investigation of CFS shear walls with one and two-sided steel sheeting
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Investigation of CFS shear walls with one and two-sided steel sheeting

机译:单面和双面钢板的CFS剪力墙研究

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In this study six Cold-Formed Steel shear wall (CFS) with one and two side steel sheeting are tested under reversed cyclic loading. Besides, thirteen numerical models are simulated, using nonlinear finite element method, and analyzed under monotonic pushover loading. The studied parameters are the comparison of one and two side steel sheeting, the nominal thickness of steel sheet and boundary elements, and height to width aspect ratios of the wall. The performance of tested specimens is investigated in terms of lateral load-story drift response, failure modes and ultimate strength of shear walls. Based on AISI S213 the available strength of two-sided steel-sheathed walls is cumulative but the results of the experimental study show that the capacity of two-sided steel-sheathed walls is more than twice of one side steel sheathed if the boundary elements are strong enough to sustain imposed forces. Overall, the performance of CFS shear walls is highly depending on the ratio of boundary element thickness to steel sheet thickness. According to numerical models, there is a linear relationship between the nominal sheet thickness and the ratio of ultimate strength to nominal frame thickness. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,在反向循环载荷下测试了六块带有一侧和两侧钢板的冷弯型钢剪力墙(CFS)。此外,采用非线性有限元方法对十三种数值模型进行了模拟,并在单调推覆荷载作用下进行了分析。研究的参数是一侧和两侧钢板的比较,钢板的公称厚度和边界元素,以及壁的高宽比。根据侧向荷载-层间位移响应,破坏模式和剪力墙的极限强度研究了被测样品的性能。根据AISI S213,两面钢护套墙的可用强度是累积的,但实验研究结果表明,如果边界元素为2,则两面钢护套墙的承载能力是一面钢护套的两倍以上。足以承受施加的力量。总体而言,CFS剪力墙的性能高度取决于边界元素厚度与钢板厚度的比率。根据数值模型,名义薄板厚度与极限强度与名义框架厚度之比之间存在线性关系。 (C)2016 Elsevier Ltd.保留所有权利。

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