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Abstract
Reactive friction stir processing was used to fabricate in situ hybrid nano-composite. Nano-sized Al2O3 and Al13Fe4 products were formed in the stir zone of rolled AA1050 through the addition of pre-milled Al + Fe3O4 powder mixture. The thermomechanical phenomena associated with the process and addition of active powder mixture provided the occurrence of the aluminothermy reaction. Microstructural investigations showed significant matrix grain refinement; the mean grain size of ~ 3 μm was achieved. The nano-sized reinforcement products prevented grain growth after dynamic recrystallization process by pinning the grain boundaries. The excellent matrix grain refining and formation of in situ hard reinforcements led to the increase of hardness and tensile strength to ~ 56% and 49% over those of the untreated substrate, respectively.
| Original language | English |
|---|---|
| Pages (from-to) | 1441–1453 |
| Number of pages | 13 |
| Journal | Metals and Materials International |
| Volume | 26 |
| Early online date | 30 Jul 2019 |
| DOIs | |
| Publication status | Published - Sept 2020 |
Keywords
- Reactive friction stir processing
- Nano-composites
- Fe3O4
- Thermite
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Dive into the research topics of 'Mechanical and Microstructural Characterization of Hybrid Aluminum Nanocomposites Synthesized from an Al–Fe3O4 System by Friction Stir Processing'. Together they form a unique fingerprint.Projects
- 1 Finished
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Centre for Advanced Materials for Renewable Energy Generation: CAMREG
Stack, M. (Principal Investigator) & Brennan, F. (Co-investigator)
EPSRC (Engineering and Physical Sciences Research Council)
1/12/16 → 31/05/21
Project: Research
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