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Fatigue tests and design of welded thin-walled RHS-Channel and Channel- Channel cross-beam connections under cyclic bending

机译:循环弯曲下薄壁RHS通道和通道通道横梁焊接薄板的疲劳试验和设计

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摘要

Research on fatigue strength of welded galvanized cross-beam connections has been carried out and reported. Previous research focused on cross-beams made up of rectangular hollow sections (RHS) and Angle sections; RHS-RHS as well as RHS-Angle cross-beam connections and was published in Thin-Walled Structures, 48 (2010) 159-168. This paper reports on the fatigue strength of cross-beam connections made up of rectangular hollow sections (RHS) and Channel sections; RHS-Channel and Channel-Channel cross-beam connections. Fatigue tests on RHS-Channel and Channel-Channel crossbeam connections were carried out under cyclic bending in the bottom member. The resultant failure modes during the fatigue tests are reported. The crack growth patterns that are observed leading to failure are studied in relation to the stress concentration factors (SCFs) from sample specimens. The stress concentration factors (SCFs) are determined from stress measurements around the hot spots of the sample specimens. The resultant RHS-Channel and Channel-Channel S-N data is compared to S-N data of cross-beam connections from previous research. A comparison of the S-N data with existing fatigue design curves in the Australian Standard, AS4600, gives an indication of the class that can be adopted for the fatigue design of RHS-Channel and Channel-Channel cross-beam connections under cyclic bending using deterministic methods. Statistical analyses of the S-N data are also carried out to determine recommended design curves for the RHS-Channel and Channel-Channel cross-beam connections for both the classification and hot spot stress method.
机译:已经进行并报道了焊接镀锌横梁连接的疲劳强度的研究。先前的研究集中在由矩形空心截面(RHS)和角钢截面组成的横梁上。 RHS-RHS以及RHS-Angle横梁连接,并发表在《薄壁结构》(48)(2010)159-168中。本文报道了由矩形空心截面(RHS)和槽形截面组成的横梁连接的疲劳强度; RHS通道和通道通道跨光束连接。在底部构件的周期性弯曲下,对RHS通道和通道通道横梁连接进行了疲劳测试。报告了疲劳测试期间的最终失效模式。研究了观察到的导致失效的裂纹扩展模式,并与样品样本中的应力集中因子(SCF)进行了比较。应力集中因子(SCF)由样品样品热点附近的应力测量确定。将所得的RHS-Channel和Channel-Channel S-N数据与先前研究中的横梁连接的S-N数据进行比较。将SN数据与澳大利亚标准AS4600中现有的疲劳设计曲线进行比较,表明可以使用确定性方法对循环弯曲下的RHS-Channel和Channel-Channel横梁连接的疲劳设计采用的类别。还对S-N数据进行统计分析,以确定用于分类和热点应力方法的RHS通道和通道通道横梁连接的推荐设计曲线。

著录项

  • 来源
    《Thin-Walled Structures》 |2013年第2期|27-36|共10页
  • 作者单位

    School of Computing, Engineering and Mathematics, University of Western Sydney, Penrith, NSW, Australia,Guang-Hua Education Foundation Scholar, College of Civil Engineering, Tongji University, Shanghai, China;

    Department of Civil Engineering, Monash University, Clayton, VIC 3800, Australia;

    Department of Building Engineering, College of Civil Engineering, Tongji University, Shanghai, 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

    cross-beams; fatigue; cyclic loading; stress concentration factors; failure modes;

    机译:横梁;疲劳;循环加载应力集中系数;失效模式;

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