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DESIGN OF NON-PERIODIC LATTICE STRUCTURES BY ALLOCATING PI OPTIMIZED BUILDING BLOCKS

机译:通过分配PI优化的建筑砌块来设计非周期性晶格结构

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The development of lattice design approaches using topology optimization to create complex lattice structures is the focus of ongoing research as the lattice structures show great potential throughout a wider range of research fields. Unfortunately, many of the methods suggested are often very difficult to industrialize due to their complexity and excessive computational costs in the design process. This paper proposes a novel framework of generating non-periodic lattice structures using topologically pre-optimized building blocks to improve the computational efficiency of the optimization process while maintaining the performance of the target structure and to make the process of obtaining optimal design more accessible for people with limited knowledge of topology optimization. The proposed method is comprised of two phases: the generation of a library holding optimized building blocks that can endure various loading conditions and the allocation of these building blocks at the proper location in the design space based on stress information obtained from the finite element analysis. Numerical examples are presented to show that the method is feasible and able to achieve reasonable performances, demonstrating its efficacy.
机译:随着拓扑结构在更广泛的研究领域中显示出巨大的潜力,使用拓扑优化来创建复杂的网格结构的网格设计方法的开发是正在进行的研究的重点。不幸的是,由于设计过程中的复杂性和过高的计算成本,建议的许多方法通常很难工业化。本文提出了一种使用拓扑预先优化的构建块生成非周期性晶格结构的新颖框架,以在保持目标结构性能的同时提高优化过程的计算效率,并使人们更容易获得优化设计的过程。拓扑优化知识有限。所提出的方法包括两个阶段:生成包含可承受各种加载条件的优化构件的库,以及基于从有限元分析获得的应力信息,将这些构件分配到设计空间中的适当位置。数值算例表明该方法可行,性能合理,证明了该方法的有效性。

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