Process-Specific Topology Optimization Method Based on Laser-Based Additive Manufacturing of AlSi10Mg Components: Material Characterization and Evaluation

Author:

Czink Steffen1ORCID,Holoch Jan2,Renz Robert2,Schulze Volker1ORCID,Albers Albert2ORCID,Dietrich Stefan1ORCID

Affiliation:

1. Institute for Applied Materials (IAM-WK), Engelbert-Arnold-Straße 4, 76131 Karlsruhe, Germany

2. IPEK–Institute of Product Engineering, Kaiserstrasse 10, 76131 Karlsruhe, Germany

Abstract

In the laser powder bed fusion process (PBF-LB), components are built up incrementally by locally melting metal powder with a laser beam. This process leads to inhomogeneous material properties of the manufactured components. By integrating these specific material properties into a topology optimization algorithm, product developers can be supported in the early phases of the product development process, such as design finding. For this purpose, a topology optimization method was developed, which takes the inhomogeneous material properties of components fabricated in the PBF-LB process into account. The complex pore architecture in PBF-LB components was studied with micro-computed tomography (µCT). Thereby, three characteristic regions of different porosity were identified and analyzed. The effective stiffness in each of these regions was determined by means of resonant ultrasonic spectroscopy (RUS) as well as finite element analysis. Afterward, the effective stiffness is iteratively considered in the developed topology optimization method. The resulting design proposals of two optimization cases were analyzed and compared to design proposals derived from a standard topology optimization. To evaluate the developed topology optimization method, the derived design proposals were additionally manufactured in the PBF-LB process, and the characteristic pore architecture was analyzed by means of µCT.

Funder

German Research Foundation

KIT-Publication Fund of the Karlsruhe Institute of Technology

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference59 articles.

1. Henning, F., and Moeller, E. (2020). Handbuch Leichtbau, Carl Hanser Verlag GmbH & Co. KG.

2. Lightweight design in product development: A conceptual framework for continuous support in the development process;Albers;Proceedings of the 31st CIRP Design Conference 2021 (CIRP Design 2021),2021

3. Roth, K. (2000). Konstruieren mit Konstruktionskatalogen: Band 1: Konstruktionslehre, Springer. 3. auflage, erweitert und neu gestaltet ed.

4. Deutsch, H. (2019). Strukturoptimierung: Grundlagen und Anwendungen, Verlag Europa-Lehrmittel Nourney, Vollmer GmbH & Co. KG. 3. überarbeitete und erweiterte auflage ed.

5. Topology optimization approaches;Sigmund;Struct. Multidiscip. Optim.,2013

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