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Structural optimization based on topology optimization techniques using frame elements considering cross-sectional properties

机译:基于拓扑优化技术的结构优化,该技术使用考虑了截面特性的框架元素

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摘要

This paper discusses a new structural optimization method, based on topology optimization techniques, using frame elements where the cross-sectional properties can be treated as design variables. For each of the frame elements, the rotational angle denoting the principal direction of the second moment of inertia is included as a design variable, and a procedure to obtain the optimal angle is derived from Karush-Kuhn-Tucker (KKT) conditions and a complementary strain energy-based approach. Based on the above, the optimal rotational angle of each frame element is obtained as a function of the balance of the internal moments. The above methodologies are applied to problems of minimizing the mean compliance and maximizing the eigen frequencies. Several examples are provided to show the utility of the presented methodology.
机译:本文讨论了一种新的基于拓扑优化技术的结构优化方法,该方法使用框架元素,其中截面特性可以视为设计变量。对于每个框架元素,包括表示第二惯性矩的主方向的旋转角作为设计变量,并从Karush-Kuhn-Tucker(KKT)条件和互补条件推导获得最佳角度的过程。基于应变能的方法。基于以上所述,根据内部力矩的平衡来获得每个框架元件的最佳旋转角度。上述方法应用于最小化平均顺应性和最大本征频率的问题。提供了几个示例来显示所提出方法的实用性。

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