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Improved adaptive growth method of stiffeners for three-dimensional box structures with respect to natural frequencies

机译:基于自然频率的三维箱结构加强筋改进的自适应生长方法

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摘要

Adaptive growth method is a structural topology optimization approach based on the growth mechanism of natural biological branching systems, and it has been successfully applied for the static reinforcement of three-dimensional box structures. However, due to the effect of structural characteristics towards natural frequencies, it is difficult for adaptive growth method to effectively grow stiffeners inside three-dimensional box structures considering dynamic performance. And this paper proposes an improved version of adaptive growth method to solve this problem. Firstly, apart from the growth mechanism of natural branching systems in the initial adaptive growth method, the morphology of root tips is introduced into the growth process of internal stiffeners. The thickness of stiffeners during the optimization can be divided into four different zones: initial thickness zone, immediate thickness zone, allowable thickness zone and maturation zone. Then, a material interpolation scheme with different thickness zones is introduced to simultaneously penalize the elastic modulus and density of material of internal stiffeners according to their thicknesses. By applying this bio-inspired method, obstacles of the ground structure in dynamic design of stiffeners in three-dimensional box structures can be effectively eliminated. And notably, the internal stiffeners can successfully grow from "seed lines" and gradually bifurcate or degenerate along the optimal direction to improve the natural frequencies of structures with a clear layout pattern. Finally, the effectiveness and advantages of the proposed method are illustrated by several numerical examples. (C) 2020 Elsevier Ltd. All rights reserved.
机译:自适应增长方法是基于天然生物分支系统的生长机制的结构拓扑优化方法,已成功应用于三维箱结构的静态增强。然而,由于结构特性对自然频率的影响,难以考虑动态性能的三维箱结构内的加强筋来实现加强筋。本文提出了一种改进版的自适应增长方法来解决这个问题。首先,除了在初始自适应生长方法中自然分支系统的生长机制之外,根尖的形态被引入内部加强筋的生长过程中。优化期间加强件的厚度可分为四个不同的区域:初始厚度区,立即厚度区,允许的厚度区和成熟区。然后,引入具有不同厚度区域的材料内插方案,以同时根据其厚度惩罚内加强件的材料的弹性模量和密度。通过应用这种生物启发方法,可以有效地消除了三维盒结构中的加强筋的动态设计中的地面结构的障碍物。值得注意的是,内部加强剂可以成功地从“种子线”生长,并沿着最佳方向逐渐分叉或退化以改善具有清晰布局图案的结构的自然频率。最后,若干数值示例说明了所提出的方法的有效性和优点。 (c)2020 elestvier有限公司保留所有权利。

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