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Truss optimization with buckling considerations using geometrically nonlinear beam modeling

机译:几何非线性梁建模考虑屈曲的桁架优化

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摘要

A unified approach that accounts for various buckling phenomena in truss design optimization is presented. Euler buckling of slender members, global buckling and stability of sequences of bars are all considered by optimizing the geometric nonlinear response instead of by imposing a large number of constraints. In the proposed approach, each truss member is modeled as a sequence of co-rotational beam elements with appropriate end-releases. By applying various imperfections, buckling of single truss members, unstable configurations and global buckling can be taken into account implicitly. A detailed discussion on key aspects of the proposed approach is presented, showing how the choice of imperfections highlights certain buckling types and leads to respectively stable designs. A comparison to other approaches and to results from the literature shows that the proposed approach can ensure local and global stability without actually imposing any buckling constraints. Finally, truss optimization for various levels of global deflections is presented, exposing the potential of the formulation for optimizing highly nonlinear responses. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种统一的方法来解决桁架设计优化中的各种屈曲现象。通过优化几何非线性响应,而不是施加大量约束,可以考虑细长构件的欧拉屈曲,整体屈曲和钢筋序列的稳定性。在提出的方法中,将每个桁架构件建模为具有适当最终释放的一系列同向旋转梁单元。通过应用各种缺陷,可以隐式考虑单个桁架构件的屈曲,不稳定的配置和整体屈曲。提出了对所提出的方法的关键方面的详细讨论,显示了缺陷的选择如何突出显示某些屈曲类型并分别导致稳定的设计。与其他方法和文献结果的比较表明,所提出的方法可以确保局部和全局稳定性,而无需实际施加任何屈曲约束。最后,提出了针对各种程度的整体挠度的桁架优化,从而揭示了该公式对优化高度非线性响应的潜力。 (C)2017 Elsevier Ltd.保留所有权利。

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