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The compressive behaviour of ABS gyroid lattice structures manufactured by fused deposition modelling

journal contribution
posted on 2024-11-02, 12:53 authored by Tobias Maconachie, Rance Tino, Bill Lozanovski, Marcus Watson, Alistair Jones, Chrysoula Pandelidi, Ahmad Saeed S Alghamdi, Abduladheem Almalki, David DowningDavid Downing, Milan BrandtMilan Brandt, Martin LearyMartin Leary
Additive manufactured (AM) cellular structures have received much research attention due to their specific strength and energy absorption capabilities, and a range of geometric, material and processing parameters has been found to affect their manufacturability and mechanical performance. To investigate the effects of wall thickness and cell size on manufacturability and mechanical properties, gyroid lattice structures were fabricated from acrylonitrile butadiene styrene (ABS) using fused deposition modelling (FDM) and tested under quasi-static loading. Gyroids were confirmed to be highly manufacturable structures, and increasing density was found to further improve manufacturability. Mechanical behaviour was found to be dominated by the geometry and topology of the gyroids rather than manufacturing effects. Mechanical testing results were consistent with the predictions of the Gibson-Ashby model for cellular structures, and formulae were generated to predict the mechanical behaviour of ABS gyroid lattice structures produced by FDM. This work provides tools to enable a priori prediction of the mechanical behaviour of ABS gyroids manufactured by FDM and a greater understanding of opportunities and limitations of these structures.

History

Journal

International Journal of Advanced Manufacturing Technology

Volume

107

Issue

11-12

Start page

4449

End page

4467

Total pages

19

Publisher

Springer

Place published

United Kingdom

Language

English

Copyright

© 2020, Springer-Verlag London Ltd., part of Springer Nature.

Former Identifier

2006099542

Esploro creation date

2020-09-08

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