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Composite material design of two-dimensional structures using the homogenization design method

机译:均质化设计方法的二维结构复合材料设计

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摘要

Composite materials of two-dimensional structures are designed using the homogenization design method. The composite material is made of two or three different material phases. Designing the composite material consists of finding a distribution of material phases that minimizes the mean compliance of the macrostructure subject to volume fraction constraints of the constituent phases, within a unit cell of periodic microstructures. At the start of the computational solution, the material distribution of the microstructure is represented as a pure mixture of the constituent phases. As the iteration procedure unfolds, the component phases separate themselves out to form distinctive interfaces. The effective material properties of the artificially mixed materials are defined by the interpolation of the constituents. The optimization problem is solved using the sequential linear programming method. Both the macrostructure and the microstructures are analysed using the finite element method in each iteration step. Several examples of optimal topology design of composite material are presented to demonstrate the validity of the present numerical algorithm. Copyright © 2001 John Wiley & Sons, Ltd.
机译:使用均质设计方法设计二维结构的复合材料。复合材料由两种或三个不同的材料相制成。设计复合材料包括找到材料阶段的分布,其在周期性微观结构的单位细胞内最小化构成阶段的体积分数约束的宏观结构的平均依从性。在计算解决方案的开始时,微结构的材料分布表示为组成阶段的纯混合物。随着迭代过程展开,组件阶段将自己分开以形成独特的接口。人工混合材料的有效材料特性由组分的内插限定。使用顺序线性编程方法解决了优化问题。使用每次迭代步骤中的有限元方法分析宏观结构和微观结构。提出了复合材料最佳拓扑设计的几个例子以证明当前数值算法的有效性。版权所有©2001 John Wiley&Sons,Ltd。

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