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A Review of Methods for the Geometric Post-Processing of Topology Optimized Models

机译:拓扑优化模型几何后处理方法的综述

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摘要

Topology optimization (TO) has rapidly evolved from an academic exercise into an exciting discipline with numerous industrial applications. Various TO algorithms have been established, and several commercial TO software packages are now available. However, a major challenge in TO is the post-processing of the optimized models for downstream applications. Typically, optimal topologies generated by TO are faceted (triangulated) models, extracted from an underlying finite element mesh. These triangulated models are dense, poor quality, and lack feature/parametric control. This poses serious challenges to downstream applications such as prototyping/testing, design validation, and design exploration. One strategy to address this issue is to directly impose downstream requirements as constraints in the TO algorithm. However, this not only restricts the design space, it may even lead to TO failure. Separation of post-processing from TO is more robust and flexible. The objective of this paper is to provide a critical review of various post-processing methods and categorize them based both on targeted applications and underlying strategies. The paper concludes with unresolved challenges and future work.
机译:拓扑优化(至)从学术锻炼迅速发展成为众多工业应用的令人兴奋的纪律。已经建立了各种算法,现在可以使用几个商业包软件包。然而,主要挑战是在下游应用的优化模型的后处理。通常,由截面(三角形)模型产生的最佳拓扑,从底层有限元网中提取。这些三角模型是密集,质量差,缺乏特征/参数控制。这对下游应用构成了严重挑战,例如原型/测试,设计验证和设计探索。解决此问题的一个策略是直接将下游要求施加到算法中的约束。然而,这不仅限制了设计空间,甚至可能导致失败。从后处理的分离更加坚固和灵活。本文的目的是提供对各种后处理方法的关键综述,并根据有针对性的应用和基础策略对其进行分类。本文以尚未解决的挑战和未来的工作得出结论。

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