Projects per year
Abstract
This study investigates the elastic behavior of AlSi10Mg foams fabricated via powder metallurgical methods using TiH as a foaming agent. Nanoindentation-based characterization of the foam wall material was combined with mechanical compression testing and simulation-based numerical homogenization to determine both microscopic and macroscopic Young’s moduli. The compression tests focus on determining the purely elastic material response, avoiding even localized plastic deformation. High-resolution X-ray microscopy (XRM) data of three representative specimens were used to generate finite element meshes for computing directional stiffness properties. The simulations reveal moderate elastic anisotropy, with the lowest Young’s moduli generally occurring along the direction of reduced specimen thickness. The experimentally measured stiffness quantitatively aligns well with numerical predictions, but yielded more anisotropy than predicted.
| Original language | English |
|---|---|
| Article number | 24 |
| Journal | Production Engineering |
| Volume | 20 |
| DOIs | |
| Publication status | Published - 19 Dec 2025 |
Keywords
- AlSi10Mg
- Compression testing
- Digital image correlation
- Metal foam
- Numerical homogenization
ASJC Scopus subject areas
- Mechanical Engineering
- Industrial and Manufacturing Engineering
Projects
- 1 Active
-
HyPo: Collaborative Research Centre-Transregio 375, sub-project B02: Process-integrated foaming in additive manufacturing of hybrid component
Maier, H. J. (Principal Investigator)
1 Apr 2024 → 31 Dec 2026
Project: Research
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