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Stability Optimization of Trapezoidal Frame with Rigid Members and Flexible Joints

机译:刚性构件和柔性接头梯形框架的稳定性优化

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Stability has been an important subject in the design of a portal frame structure. Conventional stability analysis of the portal frame is normally conducted assuming that all the joints are rigid. However, the joints of a portal frame in real applications are not always rigid and semirigid connections often exist. AISC design code requires that the effect of the joint flexibility on the behavior and buckling capacity of the portal frame should be taken into account in the analysis and design procedures. To address this issue, a portal frame with flexible joints and rigid members was theoretically analyzed in the literature and closed form solution was derived for its global buckling load. However, when more parameters are involved, e.g., different leg lengths, asymmetric frame shape, and moving load, the solution to the governing equation of the stability of the frame becomes impossible. This paper presents a comprehensive parametric study on the stability of an asymmetric portal frame with flexible joints and rigid members through finite element (FE) analysis. The FE model was first validated by the existing theoretical solution in the literature. Parameters including the position of the moving load, the lengths of the two frame legs, and the span of the frame were analyzed. Design curves were developed based on the parametric study, from which the stable, unstable, and catastrophically unstable states of the portal frame were characterized. This paper contributes benchmark results for the stability optimization in the design of the portable frame of a general shape.
机译:稳定性是门户框架结构的设计中的重要主题。通常假设所有接头都是刚性的,通常对门框架进行常规稳定性分析。但是,实际应用中的门户网站帧的关节并不总是刚性的,并且通常存在半原连接。 AISC设计代码要求在分析和设计程序中考虑对门户框架的行为和屈曲容量的关节灵活性的影响。为了解决这个问题,在文献和封闭的形式溶液中理论上分析了具有柔性关节和刚性成员的门户框架,以其全球屈曲负荷。然而,当涉及更多参数时,例如,不同的腿长,不对称框架形状和移动负载,对框架稳定性的控制方程的解决方案变得不可能。本文通过有限元(Fe)分析,介绍了一种综合参数研究了柔性接头和刚性构件的不对称门框稳定性。 FE模型首次由文献中现有的理论解决方案验证。分析包括移动负载的位置的参数,两个框架腿的长度以及帧的跨度。基于参数研究开发了设计曲线,其特征是门户框架的稳定,不稳定和灾难性的不稳定状态。本文为一般形状的便携式框架设计提供了稳定优化的基准结果。

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