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Key Considerations in Tracing the Postbuckling Response of Structures with Multi Winding Loops

机译:跟踪具有多个绕线结构的结构的后屈曲响应的关键注意事项

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The postbuckling response of structures with multi winding loops is characterized by the appearance of multi adjacent equilibrium paths, which often makes the iterations difficult to converge to the desired path. In this paper, some key issues for tracing the postbuckling response of a structure using an incremental-iterative approach are discussed. Concerning the finite element equations used, it is essential that the corrector used for recovering the element forces from the element displacements be made as accurate as possible, and that the predictor for computing the structural displacements under given load increments, which are approximate by nature due to linearization involved, be accurate to the level not to misguide the iterations. As for the incremental-iterative scheme, it is required to be: (1) numerically stable when encountering the limit points, (2) adjustable in load increments to reflect the stiffness variation, and (3) self-adaptive in changing the loading direction. To demonstrate the ideas involved, some examples with highly complicated postbuckling responses will be solved in this paper.
机译:具有多个缠绕环的结构的后屈曲响应的特征在于出现了多个相邻的平衡路径,这通常会使迭代难以收敛到所需的路径。在本文中,讨论了使用增量迭代方法跟踪结构的屈曲后响应的一些关键问题。关于所使用的有限元方程,至关重要的是,使用于从单元位移中恢复单元力的校正器尽可能精确,并且在给定载荷增量下计算结构位移的预测器应尽可能地精确,因为对于涉及的线性化,要精确到不会误导迭代的水平。对于增量迭代方案,要求:(1)遇到极限点时数值稳定;(2)可调载荷增量以反映刚度变化;以及(3)自适应地改变载荷方向。为了说明所涉及的想法,本文将解决一些具有高度复杂的后屈曲响应的示例。

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