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Influence of shear lag on ultimate tensile capacity of angles and tees

机译:剪力滞后对角钢三通极限抗拉能力的影响

摘要

This paper presents an experimental investigation about the shear lag effects of tension steel members with welded connections. In total twenty tests were conducted, including twelve on single angles and eight on single tees. Various weld arrangements were considered as test parameters for the angle specimens which were connected by their short legs. For the tees, the influences of weld length and flange-to-web width ratio were studied. The test results showed that, the test efficiency, which is defined as the ratio of the ultimate capacity to the calculated tensile capacity of the gross section, can be increased when a balanced weld arrangement instead of an unbalanced one was employed for the angle specimens. For the tee specimens, the test efficiency was not sensitive to the weld length. In addition, increasing the flange-to-web width ratio could increase the test efficiency of the tees, although the improvement was not significant. Subsequently, design specifications for shear lag were examined, and the test-to-predicted ratios were presented. For more extensive comparisons, the ratios from an earlier investigation undertaken by the authors and co-workers and those from other researchers were also included for discussion. Finally, with the available database, reliability studies were undertaken to examine the resistance factors used in the current codes for predicting the ultimate tensile capacity of single angles and tee sections, and accordingly, new design recommendations are proposed.
机译:本文提出了关于焊接连接的张拉钢构件的剪力滞后效应的实验研究。总共进行了二十次测试,包括十二个单角度和八个八字。各种焊接方式都被认为是通过短腿连接的角钢试样的测试参数。对于三通,研究了焊接长度和法兰与腹板宽度比的影响。试验结果表明,当角钢采用平衡焊接而不是不平衡焊接时,可以提高试验效率,试验效率是指极限承载力与计算得出的总截面抗拉能力之比。对于三通试样,测试效率对焊缝长度不敏感。另外,增加法兰与腹板的宽度比可以提高三通的测试效率,尽管改进并不明显。随后,检查了剪切滞后的设计规范,并提出了测试与预测的比率。为了进行更广泛的比较,还包括了作者和同事以及其他研究人员进行的较早研究得出的比率。最后,利用可用的数据库,进行可靠性研究,以检查当前规范中用于预测单角度和三通截面的极限抗拉能力的阻力因素,因此,提出了新的设计建议。

著录项

  • 作者

    Fang C; Lam ACC; Yam MCH;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:56:13

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