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首页> 外文期刊>Journal of Constructional Steel Research >More efficient design of CFS strap-braced frames under vertical and seismic loading
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More efficient design of CFS strap-braced frames under vertical and seismic loading

机译:垂直和地震荷载下的CFS带支撑框架更有效地设计

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Strap-braced stud walls are one of the primary lateral-force resisting systems for conventional cold-formed steel (CFS) buildings. While CFS wall-panels in general exhibit a satisfactory seismic performance, previous studies showed that they may experience a premature brittle failure in the presence of vertical loading. However, current design codes do not make any provisions for calculating the lateral load capacity and ductility of strap-braced stud wall frames under vertical loading. This study aims to develop, for the first time, a practical design methodology for seismic design of CFS strap-braced stud wall frames under such conditions. To this end, a comprehensive parametric study was carried out using experimentally validated detailed numerical models in ABAQUS, accounting for material nonlinearities, initial geometric imperfections, and secondary moments due to P-Delta effects. Parameters of the investigations were the strap thickness and the intensity of the vertical loading. Design formulae were derived, and a preliminary design methodology was proposed for predicting the lateral load capacity and ductility of single strap-braced stud walls under a range of vertical loading ratios. The efficiency of the proposed method compared to Eurocode 8 design was then demonstrated for a 6-storey CFS frame, which highlighted the importance of considering the effects of vertical loads in the seismic design of these systems. It was demonstrated that ignoring those factors can lead to a brittle lateral response even if all other code requirements are satisfied, while the proposed design methodology was shown to be efficient to reach the target lateral load and ductility capacities.
机译:带支撑螺柱壁是传统冷成型钢(CFS)建筑物的主要侧向力抗力系统之一。虽然CFS墙板一般表现出令人满意的地震性能,但之前的研究表明,它们可能在垂直载荷的情况下经历过早的脆性失败。然而,当前的设计代码没有制定任何用于计算垂直载荷下带支撑螺柱壁框架的横向载荷能力和延展性的任何规定。本研究旨在首次开发CFS带支撑螺柱壁框架的地震设计的实用设计方法。为此,在ABAQUS中使用实验验证的详细数值模型进行了一项综合的参数研究,占材料非线性,初始几何缺陷和次要时刻引起的p-delta效应。调查的参数是带厚度和垂直装载的强度。推导设计公式,提出了一种初步设计方法,用于预测在一系列垂直加载比下单个带支撑螺柱壁的横向载荷能力和延展性。然后,与欧元码8设计相比,所提出的方法的效率用于6层楼的CFS框架,这突出了考虑垂直载荷在这些系统的地震设计中的影响的重要性。已经证明,即使满足所有其他代码要求,忽略这些因素也会导致脆性横向响应,而所提出的设计方法显示有效以达到目标横向载荷和延展性能力。

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