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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Graded-material design based on phase-field and topology optimization
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Graded-material design based on phase-field and topology optimization

机译:基于相场和拓扑优化的梯度材料设计

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In the present work we introduce a novel graded-material design based on phase-field and topology optimization. The main novelty of this work comes from the introduction of an additional phase-field variable in the classical single-material phase-field topology optimization algorithm. This new variable is used to grade the material properties in a continuous fashion. Two different numerical examples are discussed, in both of them, we perform sensitivity studies to asses the effects of different model parameters onto the resulting structure. From the presented results we can observe that the proposed algorithm adds additional freedom in the design, exploiting the higher flexibility coming from additive manufacturing technology.
机译:在这项工作中,我们引入了一种基于相场和拓扑优化的新型梯度材料设计。这项工作的主要新颖之处在于在经典的单材料相场拓扑优化算法中引入了一个额外的相场变量。这个新变量用于以连续的方式对材料属性进行分级。讨论了两个不同的数值示例,在这两个示例中,我们进行了敏感性研究,以评估不同模型参数对结果结构的影响。从所呈现的结果中,我们可以观察到,所提出的算法在设计中增加了额外的自由度,利用了增材制造技术带来的更高灵活性。

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