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Topology optimization of self-supporting metamaterials for additive manufacturing: a novel framework and validation

Auteur(s):
ORCID


ORCID

Médium: article de revue
Langue(s): anglais
Publié dans: Smart Materials and Structures, , n. 1, v. 34
Page(s): 015056
DOI: 10.1088/1361-665x/ada07d
Abstrait:

Topology optimization (TO) for additive manufacturing (AM) often faces challenges related to overhang structures, increasing build time, material costs, and the need for support structures. This paper proposes a novel framework for designing and manufacturing two- and three-dimensional self-supporting metamaterials that eliminate the requirement for additional support during AM. By integrating an AM filter into the TO process, homogenization methods for evaluating elasticity properties, and a symmetry constraint to ensure connectivity between periodic unit cells, we demonstrate optimized self-supporting metamaterials. Manufacturability is verified through fused deposition modeling, and mechanical compression experiments confirm the performance of the resulting metamaterials. The approach offers a cost-effective and time-efficient solution for fabricating complex metamaterials without auxiliary supports.

Structurae ne peut pas vous offrir cette publication en texte intégral pour l'instant. Le texte intégral est accessible chez l'éditeur. DOI: 10.1088/1361-665x/ada07d.
  • Informations
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  • Reference-ID
    10807622
  • Publié(e) le:
    17.01.2025
  • Modifié(e) le:
    17.01.2025
 
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