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Finite element analysis of the effects of frame deformation on welded gusset plates.

机译:框架变形对角撑板焊接影响的有限元分析。

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摘要

The traditional design method of gusset plates neglects the frame deformation's effect, which could lead to under designing the gusset plate. The traditional design method only considers the stress caused by the bracing member in tension, which creates tension and shear stresses in the gusset plate, however, the deformation of the column and beam connected to the gusset plate introduce compressive stresses, potentially increasing the stress in the gusset plate. The following factors are studied using finite element method: (a) the relative stiffness between the beam, the column and the bracing element, and (b) the configuration of the gusset plate. Two gusset plate configurations and two beam and column cross sections were used to compare the results.;To determine the increase caused by the frame deformation two approaches were used; approach I ignores frame deformation while approach II takes into consideration the effects of frame deformation. This study concludes that factor b, the configuration of the gusset plate, has the greatest impact on the increase of stress at the end of the weld. Additionally, factor a, the relative stiffness between the beam to bracing element and column to bracing element, has a slightly less significant impact on the gusset plate stress than the configuration of the gusset plate. Both factors need to be studied more to determine their maximum potential increase of the stress, as well as another factor (c) the angle between the center line of the bracing element and the center line of the column, which would change the relative stiffness between the beam and column.
机译:传统的角撑板设计方法忽略了框架变形的影响,这可能会导致角撑板设计不足。传统的设计方法仅考虑由支撑构件在拉力下产生的应力,这会在角撑板中产生拉应力和剪应力,但是,连接到角撑板的柱和梁的变形会引入压应力,从而可能会增加应力。角撑板。使用有限元方法研究以下因素:(a)梁,柱和支撑元件之间的相对刚度,以及(b)角撑板的配置。使用两个角撑板配置以及两个梁和柱的横截面来比较结果。为了确定由框架变形引起的增加,使用了两种方法。方法I忽略框架变形,而方法II考虑框架变形的影响。这项研究得出的结论是,角撑板的形状b对焊接结束时应力的增加影响最大。另外,因数a,梁至支撑元件与柱至支撑元件之间的相对刚度,对角撑板应力的影响略小于角撑板的构型。需要进一步研究这两个因素以确定它们的最大潜在应力增加,以及另外一个因素(c)支撑元件的中心线和柱的中心线之间的角度,这将改变之间的相对刚度梁和柱。

著录项

  • 作者

    Strauss, Daniel Paul.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2010
  • 页码 53 p.
  • 总页数 53
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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