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An implicit model for the integrated optimization of component layout and structure topology

机译:用于组件布局和结构拓扑集成优化的隐式模型

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摘要

Integrated design of the structure topology and involved component layout is a challenging design issue when compared with traditional topology optimization. In this paper, we propose an implicit modeling approach that works completely on an Eulerian finite element mesh throughout the whole optimization process. To this aim, implicit level-set functions and R-functions are employed to describe geometrical shapes of movable components. In particular, a modified arctan function is adopted to depict the material discontinuity along the interface between the structure domain and each component domain. They are then used for material interpolations and analytical sensitivity analysis w.r.t. both pseudo-density design variables and location design variables related to the host structure and components, respectively. Based on a variety of numerical tests, it is demonstrated that considered design problems with movable components can easily be solved by extending the SIMP material model based topology optimization approach using an Eulerian mesh and the gradient-based optimization algorithm.
机译:与传统拓扑优化相比,结构拓扑和相关组件布局的集成设计是一个具有挑战性的设计问题。在本文中,我们提出了一种隐式建模方法,该方法可在整个优化过程中完全在欧拉有限元网格上工作。为此,采用隐式水平集函数和R函数来描述可移动组件的几何形状。特别地,采用修改后的反正切函数来描述沿着结构域和每个组件域之间的界面的材料不连续性。然后将它们用于材料插值和w.r.t.的分析灵敏度分析。伪密度设计变量和位置设计变量分别与主体结构和组件有关。基于各种数值测试,结果表明,通过使用欧拉网格和基于梯度的优化算法扩展基于SIMP材料模型的拓扑优化方法,可以轻松解决所考虑的活动部件设计问题。

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