The Size Matching and Scaling Method: A Synthesis Method for the Design of Mesoscale Cellular Structures

Patrick S. Chang, D. Rosen
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引用次数: 64

Abstract

Mesoscale lattice structures are a type of cellular structure with support element lengths on the order of magnitude of centimeters. These types of structures are engineered for high performance and are used particularly in industries where low weight and high strength are desired. However, these structures are difficult to design because they often contain thousands of support elements. To design mesoscale lattice structures, current synthesis methods generally require some form of rigorous, multi-variable optimization that can slow or halt the design process. In this paper, we present a new, highly efficient, method for the design of mesoscale lattice structures, the Size Matching and Scaling method. This method eliminates the need for time-consuming optimization by using a combination of a solid-body finite element analysis and a library of pre-defined lattice configurations to generate a structure's lattice topology. In addition, we explore several methods for determining the best lattice diameter values for the lattice topology. Various 2-D and 3-D examples will be used to test and validate the method.
尺寸匹配和缩放方法:一种设计中尺度细胞结构的综合方法
中尺度晶格结构是一种支撑单元长度在厘米数量级的细胞结构。这些类型的结构是为高性能而设计的,特别是在需要低重量和高强度的行业中使用。然而,这些结构很难设计,因为它们通常包含数千个支撑元件。为了设计中尺度晶格结构,目前的合成方法通常需要某种形式的严格的多变量优化,这可能会减慢或停止设计过程。在本文中,我们提出了一种新的、高效的设计中尺度晶格结构的方法——尺寸匹配和缩放法。该方法通过结合实体有限元分析和预先定义的晶格配置库来生成结构的晶格拓扑,从而消除了耗时的优化需要。此外,我们探讨了几种确定晶格拓扑的最佳晶格直径值的方法。将使用各种2d和3d示例来测试和验证该方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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