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Design procedures for stub columns

机译:存根列的设计过程

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This paper presents a finite element analysis on the post-buckling behaviour of thin-walled cold-formed lipped channel and hat-section stub columns under axial compression. The specimens were modelled exactly as that used in the carefully controlled stub column tests conducted by Zaras and Rhodes. Numerical predictions on the load versus end-shortening characteristics and ultimate load capacity of the structures were obtained using a non-linear finite element analysis. The effect of the input parameters such as the degree of prescribed initial imperfection and the size of the element mesh, on the convergence of the solution is examined. The initial imperfection for post-buckling analysis is achieved by making use of the exact linear buckling wave form. Standard design procedures are developed of post-buckling analysis for thin-walled stub columns using finite element method. Results from the design procedure correlate well with experimental data and BS5950 predictions.
机译:本文介绍了轴压下薄壁冷成型通道和帽子段带柱柱后屈曲行为的有限元分析。标本的建模完全如Zaras和罗得岛进行的小心控制的存根测试中使用。使用非线性有限元分析获得了对载荷与结束缩短特性和结构的最终负载能力的数值预测。检查参数的效果如规定的初始缺陷程度和元素网格的大小,在解决方案的收敛性上。通过使用精确的线性屈曲波形来实现后屈曲分析的初始缺陷。使用有限元方法,开发了标准设计程序对薄壁短柱的后屈曲分析。设计过程的结果与实验数据和BS5950预测相关。

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