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Nonlinear finite element modeling for steel beam-column connection attached with top and seat angle

机译:钢梁-柱连接顶部和支座角的非线性有限元建模

摘要

Two types of connection are generally considered in the design of steel structures in practice. These are classified as completely rigid (fixed) and simple (pin) connections. In theory, completely rigid connections cannot undergo rotation and simple connections cannot transfer moment. Nevertheless, in reality, rigid connections have a relative flexibility which makes them to rotate and simple connections have some reserve capacity to transfer moments. However, in an effort to increase the amount of data on the rotational stiffness of top and seat angle available to researchers, this thesis presents the modeled and non linear analysis of different theoretical top and seat angle connections. The finite element modeling software, ABAQUS, is used to create moment-rotation curves for these theoretical connections such as top and seat angle connection with bracket and top and seat angle connection with gusset plate. To demonstrate finite element modeling’s ability to accurately predict the response of the theoretical connections, the results of several experiments performed on top and seat connections are reproduced in ABAQUS. The result of this study shows that initial stiffness of top and seat angle connection increased when attached bracket or gusset plate in connection zone. It is also found that this type of connection can be classified as rigid connection.
机译:实际上,在钢结构设计中通常考虑两种类型的连接。这些分为完全刚性(固定)和简单(引脚)连接。理论上,完全刚性的连接不能旋转,简单的连接不能传递力矩。然而,实际上,刚性连接具有相对的柔性,这使得它们可以旋转,而简单的连接则具有一定的传递力矩的储备能力。然而,为了增加研究人员可获得的有关顶部和座椅角度旋转刚度的数据量,本文提出了不同理论顶部和座椅角度连接的建模和非线性分析。有限元建模软件ABAQUS用于创建这些理论连接的力矩-旋转曲线,例如,顶部和座椅角连接与支架以及顶部和座椅角连接与角撑板。为了证明有限元建模能够准确预测理论连接的响应,在ABAQUS中复制了在顶部和座椅连接上进行的几次实验的结果。这项研究的结果表明,当在连接区域中连接支架或角撑板时,顶部和座椅角度连接的初始刚度增加。还发现这种类型的连接可以被分类为刚性连接。

著录项

  • 作者

    Hosseini Seyed Hamed;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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