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Load carrying capacity enhancement of cold formed steel walls using shotcreted steel sheets

机译:使用喷浆钢板增强冷弯型钢墙的承载能力

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摘要

Recently worldwide cold formed steel buildings are recognized as viable alternatives to reinforced concrete buildings especially in seismic areas. This is because they are lightweight (easy to handle), fast constructed, energy efficient (green houses), economical, dimensionally stable and they do not need skilled worker. Under vertical loading the design principles of these buildings are well established and codified, however, under lateral loadings such as wind and earthquake loads efficiently design is needed. In this paper a new sheathing technique uses shotcreted ribbed steel sheets is proposed to improve the stability and increase the lateral load carrying capacities of the CFS walls in order to withstand earthquake and wind loads safely. The idea is to sheath the outer side of CFS structure external walls with thin ribbed steel sheets, then shotcreted the sheets with cement or gypsum mortars. To test the concept full size wall specimens were prepared in the laboratory and tested under monotonic vertical and lateral loads. Some of the specimens were sheathed with the traditional fiber cement boards or gypsum boards with mat reinforcement, while the others were sheathed with the proposed technique. Test results indicates that the lateral load carrying capacities of the walls sheathed with the proposed technique increases by about two times compared with the walls sheathed with traditional boards. And under ultimate loads they fail in local failure modes rather than overall buckling failure modes which commonly occur in the walls sheathed with traditional boards.
机译:最近,世界范围内的冷弯钢结构建筑物被认为是钢筋混凝土建筑物的可行替代方案,尤其是在地震地区。这是因为它们重量轻(易于处理),结构快,节能(温室),经济,尺寸稳定并且不需要熟练工人。在垂直荷载下,这些建筑物的设计原理已得到很好的确立和规范化,但是,在横向荷载(例如风和地震荷载)下,需要进行有效的设计。本文提出了一种新的使用喷射肋板的护套技术,以提高稳定性并增加CFS墙的侧向承载能力,从而安全地承受地震和风荷载。这个想法是用薄肋板的钢板包裹CFS结构外壁的外侧,然后用水泥或石膏砂浆对板进行喷射。为了测试概念,在实验室中准备了完整尺寸的墙标本,并在单调的垂直和横向载荷下进行了测试。一些标本用传统的纤维水泥板或石膏板加垫层覆盖,而另一些标本采用建议的技术覆盖。测试结果表明,与采用传统板的外墙相比,采用本发明的技术覆盖的墙的横向承载能力提高了约两倍。在极限载荷下,它们会以局部失效模式失效,而不是整体屈曲失效模式失效,而这种屈曲失效模式通常会出现在传统木板外墙中。

著录项

  • 来源
    《Thin-Walled Structures》 |2012年第2012期|p.145-153|共9页
  • 作者单位

    Civil Engineering Department, Engineering Faculty, Marmara University, Goztepe Kampusu, Kadikoy, 34722 Istanbul, Turkey;

    AKKON Company, Ahi Evren Caddesi Nazmi Akbaci Ticaret Merkezi, D Blok No. 233, Maslak 34398, Istanbul, Turkey;

    Civil Engineering Faculty, Istanbul Technical University, 34469 - Maslak Sariyer, Istanbul, Turkey;

    Civil Engineering Faculty, Istanbul Technical University, 34469 - Maslak Sariyer, Istanbul, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CFS walls; ribbed steel sheet; shear wall; seismic; shotcrete;

    机译:CFS墙;带肋钢板剪力墙地震喷射混凝土;

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