Exploring 3D printing techniques for the hybrid fabrication of discrete topology optimized structures

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Date

2022

Authors

Mauricio Morales-Beltran
Berk Selamoğlu
Kaan Çetin
Halis Arda Özdemir
Fulya Özbey

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Publisher

SAGE Publications Inc.

Open Access Color

Green Open Access

No

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Abstract

The application of topology optimization methods in architecture while useful for conceptual design explorations seems to be limited by the practical realization of continuum-type design outcomes. One way to overcome this limitation is setting up design and fabrication techniques through which continuum domains become discrete structures. This study investigates to which extent discrete optimized systems can be built using a hybrid approach combining 3D printing and analogue fabrication techniques. The procedure is based on an algorithm in Grasshopper (Rhinoceros) that translates continuum topologies obtained in MATLAB into discrete systems providing alternatives depending on the targeted volume fraction the intended surface smoothness of the structural components and building material. The study focuses on fabrication aspects and structural performance of discrete structures using 3D printed nodes. Experimental tests evaluate the compressive strength of different types of filaments with varied infill percentages. Final prototypes are fabricated using a hybrid technique involving the use of 3D printed nodes to assemble bar-arrays comprising wooden members. Results provide a critical appraisal of the limitations and potentialities of 3D printing for hybrid fabrication of real scale structures. © 2022 Elsevier B.V. All rights reserved.

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Keywords

Conceptual Design, Digital Fabrication, Discrete Structures, Material Hybridity, Petg, Pla, Topology Optimization, Compressive Strength, Conceptual Design, Fabrication, Optimization, Structural Analysis, Topology, Continuum Topology, Design Exploration, Fabrication Aspects, Fabrication Technique, Optimized Structures, Structural Component, Structural Performance, Topology Optimization Method, 3d Printers, Compressive strength, Conceptual design, Fabrication, Optimization, Structural analysis, Topology, Continuum topology, Design Exploration, Fabrication aspects, Fabrication technique, Optimized structures, Structural component, Structural performance, Topology Optimization Method, 3D printers, Digital Fabrication, Conceptual Design, Discrete Structures, Material Hybridity, PLA, Topology Optimization, PETG

Fields of Science

0209 industrial biotechnology, 0203 mechanical engineering, 02 engineering and technology

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OpenCitations Citation Count
2

Source

International Journal of Architectural Computing

Volume

20

Issue

2

Start Page

400

End Page

419
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Scopus : 1

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Mendeley Readers : 23

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1

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Web of Science™ Citations

2

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