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Cyclic tests on high strength steel flange-plate beam-to-column joints

机译:高强度钢法兰-板梁柱节点的循环试验

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摘要

Improved beam-to-column joint configurations, with the beam plastic hinges shifted away from the column faces, were required in high strength steel frames to guarantee the seismic performance, and the flange-plate beam-to-column joints are expected to be one of the improved joint configurations that have good prospects in high strength steel frames because of the potential reinforcing effects and the negligible additional requirements for construction space. However, there have been few investigations on the high strength steel flange-plate beam-to-column joints and a lack of detailed design method for flange-plate joints. Considering three different combinations of Q345 or Q460 steel beams and Q460 or Q890 steel columns, a total of 6 full-scale specimens of flange-plate beam-to-column joints with middle columns in steel frames were designed and tested subjected to anti-symmetrical cyclic loads. The failure modes, the resistance, the stiffness and the ductility of the specimens were analysed, and the influences of the joint configurational parameters, including the panel zone thickness, the flange-plate lengths, the attached fillet welds in web connections and the fillet welds arrangements around the flange plates, were investigated. According to the test results, continuity plates with enough thickness were necessary in high strength steel flange-plate joints to avoid unexpected failure modes, and the panel zone shear rotation would make a considerable contribution to the total story drift angles and the plastic story drift angles of the high strength steel frames. Five of the tested specimens reached a story drift angle larger than 0.035 rad and one of them was larger than 0.04 rad, indicating that the flange-plate joint configurations could develop a considerable ductility, which, however, may still be insufficient when adopted in structures with high ductility demand. Based on the test results, design recommendations were proposed for flange-plate beam-to-column joints in high strength steel frames.
机译:高强度钢框架需要改进的梁对柱连接配置,使梁塑料铰链从柱面移开,以确保抗震性能,而法兰盘梁对柱连接有望成为一种由于潜在的加固效果以及对建筑空间的附加要求微不足道,改进的接头结构在高强度钢框架中具有良好的前景。然而,关于高强度钢翼缘板梁柱节点的研究很少,并且缺乏详细的翼缘板接头设计方法。考虑到Q345或Q460钢梁和Q460或Q890钢柱的三种不同组合,设计并测试了6个钢框架中板带中柱的法兰板梁对柱节点的全尺寸试样,并进行了反对称测试周期性载荷。分析了试件的破坏模式,阻力,刚度和延性,以及接头配置参数的影响,包括面板区域厚度,法兰-板长,腹板连接处的角焊缝和角焊缝研究了法兰盘周围的布置。根据测试结果,在高强度钢法兰-板连接中必须使用足够厚度的连续性板,以避免意外的破坏模式,并且面板区域的剪切旋转将对总层错位角和塑性层错位角做出相当大的贡献高强度钢框架。其中五个被测样品的层间位移角大于0.035 rad,其中一个大于0.04 rad,表明法兰-板节的构型可能会产生很大的延展性,但是,在结构中采用时,仍可能不足具有高延展性需求。根据测试结果,提出了高强度钢框架中的法兰板梁对柱节点的设计建议。

著录项

  • 来源
    《Engineering Structures》 |2019年第1期|564-581|共18页
  • 作者

    Chen Xuesen; Shi Gang;

  • 作者单位

    Tsinghua Univ, Dept Civil Engn, Key Lab Civil Engn Safety & Durabil, China Educ Minist, Beijing 100084, Peoples R China;

    Tsinghua Univ, Dept Civil Engn, Key Lab Civil Engn Safety & Durabil, China Educ Minist, Beijing 100084, Peoples R China|Tsinghua Univ, Beijing Engn Res Ctr Steel & Concrete Composite S, Beijing 100084, Peoples R China;

  • 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

    Steel structure; High strength steel; Beam-to-column joint; Flange-plate joint; Cyclic test;

    机译:钢结构;高强度钢;梁对柱接头;法兰-板接头;循环试验;

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