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A Topology Optimization Method with Anisotropic Materials

机译:各向异性材料的拓扑优化方法

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In this paper, we couple topology optimization with finite element analysis. This combination, along with proven manufacturing techniques, enables the design and optimization of manufacturable topologies with anisotropic and heterogeneous material properties. An optimization algorithm is presented that simultaneously optimizes the topology on the macro scale, and the material properties of each element at the microstructure level by selecting and strategically orienting anisotropic materials. The anisotropic materials are selected from a materials database that was created by physically testing and measuring various material microstructures. Three examples illustrate the capabilities of the algorithm in simultaneously optimizing topologies and material properties. The coupling of material design and topology design can enable performance improvements that cannot be achieved without consideration to both.
机译:在本文中,我们将拓扑优化与有限元分析结合在一起。这种结合以及成熟的制造技术使设计和优化具有各向异性和异质材料特性的可制造拓扑成为可能。提出了一种优化算法,该算法通过选择和策略性地定向各向异性材料,同时在宏观尺度上优化拓扑,并在微观结构级别上优化每个元素的材料属性。各向异性材料选自通过物理测试和测量各种材料微观结构而创建的材料数据库。三个示例说明了该算法在同时优化拓扑和材料特性方面的功能。材料设计和拓扑设计的结合可以实现性能改进,而这两个方面都无法实现。

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