...
首页> 外文期刊>Journal of Structural Engineering >Full-Scale Experimental Tests on Portal Frames Comprising Novel Cold-Formed Tapered Box Sections
【24h】

Full-Scale Experimental Tests on Portal Frames Comprising Novel Cold-Formed Tapered Box Sections

机译:对由新型冷弯锥形箱型材组成的门架进行全面实验试验

获取原文
获取原文并翻译 | 示例

摘要

Abstract This paper proposes a novel, cold-formed portal framing system that comprises tapered box members formed from two cold-formed nested channel sections. The proposed method possesses structural and nonstructural advantages, such as improved seismic performance, enhanced building hygiene through bird and dust resistance, further corrosion resistance, and aesthetic improvement, as a result of fly bracing removal. The novelty of the box member lies in the tapering ability of the section, leading to material and paint savings. To examine the failure mechanisms and structural performance of the tapered box portal frame and to investigate the adequacy of the design method, two full-scale portal frames with an 18.16-m span were built and tested to failure under two common loading scenarios. The first was lateral cyclic loading into the inelastic range in conjunction with a vertically acting permanent load. The possibility of ductile plastic hinge formation in a severe earthquake was investigated using lateral cyclic testing. The second was vertical loading to failure. A novel economic loading setup was used to apply the gravity load on the frame. For the seismic design of this section type, slenderness limits are proposed for seismic applications along with the design ductility. A rotational stiffness value for a nominally pinned portal frame column base was also suggested in this study.
机译:摘要 提出了一种新型的冷弯门式框架系统,该系统由两个冷弯嵌套通道截面组成的锥形箱构件组成。所提出的方法具有结构和非结构优势,例如改善抗震性能,通过防鸟和防尘增强建筑物卫生,进一步耐腐蚀,以及由于去除苍蝇支撑而改善美观性。箱构件的新颖之处在于截面的锥度能力,从而节省了材料和油漆。为了研究锥形箱门架的破坏机理和结构性能,并研究设计方法的充分性,建造了两个跨度为18.16 m的全尺寸门架,并在两种常见荷载工况下进行了失效测试。第一种是进入非弹性范围的横向循环载荷和垂直作用的永久载荷。采用横向循环试验研究了在强地震中形成延展性塑性铰的可能性。第二个是垂直加载到失效。使用一种新颖的经济载荷设置在框架上施加重力载荷。对于该截面类型的抗震设计,提出了抗震应用的长细限值以及设计延性。本研究还提出了名义上钉住的门式框架柱基的旋转刚度值。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号