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Direct evaluation of the buckling loads of semi-rigidly jointed single-layer latticed domes under symmetric loading

机译:对称荷载下半刚性连接单层格子穹顶屈曲荷载的直接评估

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摘要

The analysis of tubular single layer structures involves geometric nonlinear methods that can consider large displacements of nodes. In addition, the analysis of single-layer structures must take into account not just member buckling, but also local and overall buckling situations. Collapse is strongly influenced by both geometric parameters and joint rigidity. Even though current computing power does allow designers to run nonlinear analyses as many times as needed, efficiency of the design process is based on the designer's ability to define an initial design close enough to the final geometry of the structure. This paper presents results obtained from analysis of the nonlinear behaviour of single-layer domes with different geometric parameters and joint rigidity. The study is performed for two load cases and concludes with the proposal of a new formula which allows designers a rapid estimation of buckling loads for semi-rigid jointed single-layer latticed domes under symmetric loading conditions.
机译:管状单层结构的分析涉及几何非线性方法,可以考虑节点的大位移。另外,对单层结构的分析不仅要考虑构件的屈曲,还要考虑局部和整体的屈曲情况。塌陷受到几何参数和接头刚度的强烈影响。尽管当前的计算能力确实允许设计人员根据需要进行多次非线性分析,但设计过程的效率仍然取决于设计人员定义初始设计的能力,该设计应尽可能接近结构的最终几何形状。本文介绍了通过分析具有不同几何参数和接头刚度的单层圆顶的非线性行为而获得的结果。该研究针对两种载荷情况进行,并提出了一个新公式的建议,该公式可让设计人员快速估计对称载荷条件下半刚性节理单层网格穹顶的屈曲载荷。

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