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Investigation on vierendeel mechanism in steel beams with circular web openings

机译:圆形腹板开口钢梁中维耶德德尔机理的研究

摘要

In the current design method for steel I beams with circular web openings, the load carrying capacities of the beams is assumed to be limited by the formation of plastic hinges at the top tee-sections at the low moment side of the web opening. Moreover, a linear interaction formula is used to assess the moment capacity of the tee-sections above and below the web openings under co-existing axial and shear forces. The method is regarded as conservative since the formation of plastic hinges in the top tee-sections at the low moment side of the web openings does not always cause failure. The beams are capable of carrying additional load until four plastic hinges at critical locations of the perforated sections are developed to form a Vierendeel mechanism. Moreover, the reduction in the moment capacities of the tee-sections under coexisting axial and shear forces is less severe than that anticipated by the linear interaction formula. The paper presents an investigation of the Vierendeel mechanism in steel beams with circular web openings based on analytical and numerical studies. The current design method is examined in detail with plastic hinges formed at the low moment side (LMS) and the high moment side (HMS) of the web openings separately. A finite element model is then established with both material and geometrical non-linearity so that load redistribution across the web openings may be incorporated. Moreover, the moment capacities of the tee-sections above and below the web openings may be properly evaluated in the presence of co-existing axial and shear forces in the finite element model. The load carrying capacities of typical universal steel beams with circular web openings are also presented and discussed. An empirical shear moment interaction curve at the perforated sections is also suggested for practical design of steel beams with circular web openings against the Vierendeel mechanism. It is found that shear yielding in steel beams with circular web openings is very important as it promotes the plastic hinge formation at the high moment side of the web opening. Such effect is less significant in steel beams with rectangular web openings where the bending moment is often dominant.
机译:在当前的用于具有圆形腹板开口的钢工字钢梁的设计方法中,假定梁的承载能力受到腹板开口低力矩侧的三通顶部塑料铰链的限制。此外,在相互作用的轴向力和剪切力作用下,使用线性相互作用公式来评估三通截面在腹板开口上方和下方的弯矩承载力。该方法被认为是保守的,因为在腹板开口的低弯矩侧的顶部三通部分中形成塑料铰链并不总是会导致故障。这些梁能够承受额外的载荷,直到在穿孔部分的关键位置形成四个塑料铰链以形成Vierendeel机构为止。此外,在轴向力和剪切力共同作用下,三通截面的弯矩承载力的减小没有线性相互作用公式所预期的那样严重。本文基于分析和数值研究,对具有圆形腹板开口的钢梁中的Vierendeel机理进行了研究。目前的设计方法将通过在腹板开口的低弯矩侧(LMS)和高弯矩侧(HMS)分别形成的塑料铰链进行详细检查。然后建立具有材料和几何非线性的有限元模型,以便可以合并跨腹板开口的载荷再分布。此外,在有限元模型中,在存在共同存在的轴向力和剪切力的情况下,可以适当地评估腹板开口上方和下方的三通截面的弯矩承载力。还介绍和讨论了具有圆形腹板开口的典型通用钢梁的承载能力。还提出了在穿孔截面上的经验剪切矩相互作用曲线,用于针对具有Vierendeel机理的圆形腹板开口的钢梁的实际设计。已经发现,具有圆形腹板开口的钢梁中的剪切屈服非常重要,因为它促进了腹板开口的高弯矩侧的塑性铰链形成。在具有矩形腹板开口的钢梁中,弯曲力矩通常占主导地位,这种影响不太明显。

著录项

  • 作者

    Chung KF; Liu TCH; Ko ACH;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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