Structural Performance of Semi-Rigid Connection Steel Frames

Raghdah H. Al-Sherif, Murtada A. Ismael
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引用次数: 1

Abstract

In most engineering designs, steel connections are usually considered as fully rigid connections or perfectly pinned connections, for simplicity of design work. In reality, this assumption is incorrect. The behaviour of the beam-column connection is in between of rigid connection and perfectly pinned connection. This type of connection is termed semi-rigid connection. This article represents a numerical analysis using finite element method of structural steel frames to investigate the effect of semi-rigid beam-column connection on the behaviour of the frame. ANSYS software was used for the finite element modelling of the frames. The beam-column connection was modelled as rotational spring with specified rotational stiffness using COMBIN14 element. The study includes investigation the effect of semi-rigid on different study cases such as: support types and number of stories. The obtained results reveal that changing the beam-column connection from rigid case to semi-rigid case with different rotational stiffness can increase the vertical and horizontal displacement of the frame with a percentage depends on the rotational stiffness of the beam-column connection. Changing the support type of the frame from fixed to pinned support or increasing the number of stories with semi-rigid connection can decrease the strength capacity of the frame. This indicates the importance of including the semi-rigid connection in the design and analysis of steel frames to obtain more realistic results.
半刚性连接钢框架的结构性能
在大多数工程设计中,为了简化设计工作,钢连接通常被认为是完全刚性连接或完全固定连接。实际上,这种假设是不正确的。梁柱连接的性能介于刚性连接和完全钉住连接之间。这种类型的连接称为半刚性连接。本文采用有限元方法对钢框架结构进行了数值分析,研究了半刚性梁柱连接对框架性能的影响。采用ANSYS软件对框架进行有限元建模。采用COMBIN14单元将梁柱连接模型化为具有指定转动刚度的旋转弹簧。研究包括调查半刚性对不同研究案例的影响,如:支撑类型和层数。研究结果表明:将梁-柱连接形式从刚性形式改为具有不同转动刚度的半刚性形式,可使框架的竖向和水平位移增加一定百分比,并取决于梁-柱连接形式的转动刚度。将框架的支承形式由固定支承改为钉接支承或增加半刚性连接的层数可降低框架的强度能力。这说明了在钢框架的设计和分析中考虑半刚性连接的重要性,以获得更真实的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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