Graded-material design based on phase-field and topology optimization

被引:0
作者
Massimo Carraturo
Elisabetta Rocca
Elena Bonetti
Dietmar Hömberg
Alessandro Reali
Ferdinando Auricchio
机构
[1] Universitá degli Studi Pavia,Dipartimento di Ingegneria Civile ed Architettura (DICAr)
[2] Technical University of Munich,Chair for Computation in Engineering
[3] Universitá degli Studi Pavia,Dipartimento di Matematica
[4] IMATI-CNR,Dipartimento di Matematica “F.Enriques”
[5] Universitá degli Studi di Milano,Department of Mathematical Sciences
[6] Weierstrass Institute for Applied Analysis and Stochastics,undefined
[7] NTNU,undefined
来源
Computational Mechanics | 2019年 / 64卷
关键词
Phase-field; Functionally graded material; Multi-material design; Topology optimization; Additive manufacturing;
D O I
暂无
中图分类号
学科分类号
摘要
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.
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页码:1589 / 1600
页数:11
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