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Topology Optimized Unit Cells for Laser Powder Bed Fusion

Eugen Boos; Steffen Ihlenfeldt; Nikolaus Milaev; Juliane Thielsch; Welf-Guntram Drossel; Marco Bruns; Beatrix A. M. Elsner
BHM Berg- und Hüttenmännische Monatshefte · Vol. 167, Issue 7 · pp. 291-299 · 2022

Abstract

The rise of additive manufacturing has enabled new degrees of freedom in terms of design and functionality. In this context, this contribution addresses the design and characterization of structural unit cells that are intended as building blocks of highly porous lattice structures with tailored properties. While typical lattice structures are often composed of gyroid or diamond lattices, this study presents stackable unit cells of different sizes created by a generative design approach to meet boundary conditions such as printability and homogeneous stress distributions under a given mechanical load. Suitable laser powder bed fusion (LPBF) parameters were determined for AlSi10Mg to ensure high resolution and process reproducibility for all considered unit cells. Stacks of unit cells were integrated into tensile and pressure test specimens for which the mechanical performance of the cells was evaluated. Experimentally measured material properties, applied process parameters, and mechanical test results were employed for calibration and validation of finite element (FE) simulations of both the LPBF process as well as the subsequent mechanical characterization. The obtained data therefore provides the basis to combine the different unit cells into tailored lattice structures and to numerically investigate the local variation of properties in the resulting structures.

Bibliographic Information

JournalBHM Berg- und Hüttenmännische Monatshefte
PublisherSpringer
Publication Date2022-07-01
Publication Year2022
Volume167
Issue7
Pages291-299
Document TypeJournal Article
Print ISSN0005-8912
eISSN1613-7531
DOI10.1007/s00501-022-01234-2

Access Information

NARA Access Coverage2005-01-01~Current
Journal Homepagehttps://www.springer.com/journal/501
Publisher PageOpen Publisher Page
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