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力学学报  2006 

Multiple Objective Topology Optimal Design of Multiphase Microstructures
多相材料微结构多目标拓扑优化设计

Keywords: topology optimization,microstructure design,multiphase materials,multiple objective function homogenization method
拓扑优化
,微结构设计,多相材料,多目标,均匀化方法

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Abstract:

The overall behavior of an elastic material with a periodic microstructure is governed by the microstructure, whose effective properties may be computed using a homogenization method. Improvements in materials performance can be obtained by designing new topologies of microstructures of these materials. The topology and volume fraction of the microstructure determines the effective properties of the materials. A multiple objective function model is presented to optimize the topology of the periodic microstructure with two or three-phase materials. The combined value of effective elastic properties is maximized. Constraints on the material volume fraction and the perimeter control are considered for eliminating the checkerboard without the restriction of prescribed microstructure symmetry. By means of the finite element method and convex programming techniques, several cases of optimal design of multiphase microstructures are solved. Influences of volume fraction, mesh and elastic modulus ratio of three-phase materials on the optimal microstructures are discussed.

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