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The Aboudi micromechanical model for topology design of structures

机译:用于结构拓扑设计的Aboudi微力学模型

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摘要

The micromechanical approach to topology design consists of defining a domain of porous material, including the loads and supports, and finding an optimal distribution of the densities. The usual method is to mesh the structure and assign a different density and material orientation to every element. Optimal topologies emerge when using the densities and orientations as design variables in a mathematical programming formulation in conjunction with a finite element analysis program. This paper presents the Aboudi method of cells, an analytical method to compute the elasic properties of composite material, and applies it to determine the mechanical properties of porous material as a function of the density of material. It is shown that the results are similar to those obtained by special finite element analysis set up to compute the elasticity matrix. The procedure is visualized on simple cantilever design problems and used within the content of a stess-ratio redesign scheme.
机译:拓扑设计的微机械方法包括定义多孔材料的区域,包括载荷和支撑,并找到最佳的密度分布。通常的方法是对结构进行网格划分,并为每个元素分配不同的密度和材料方向。当在有限元分析程序的数学编程公式中将密度和方向用作设计变量时,就会出现最佳拓扑。本文介绍了Aboudi单元法,一种用于计算复合材料弹性性能的分析方法,并将其应用于确定多孔材料的机械性能与材料密度的函数关系。结果表明,结果与通过设置弹性矩阵的特殊有限元分析获得的结果相似。该过程在简单的悬臂设计问题上可视化,并在应力比重新设计方案的内容中使用。

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