Download | - View accepted manuscript: Consolidation of Al2O3/Al Nanocomposite Powder by Cold Spray (PDF, 1.0 MiB)
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Author | Search for: Poirier, Dominique1; Search for: Legoux, Jean-Gabriel1; Search for: Drew, Robin1; Search for: Gauvin, Raynald1 |
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Affiliation | - National Research Council of Canada. NRC Industrial Materials Institute
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Format | Text, Article |
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Conference | International Thermal Spray Conference 2010: Singapore, May 3-5, 2010 |
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Subject | aluminum matrix composite; cold spray; nano-structured feedstock |
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Abstract | While the improvement in mechanical properties of nanocomposites makes them attractive materials for structural applications, their processing still present significant challenges. In this paper, cold spray was used to consolidate Al₂O₃/Al nanocomposite powders obtained from mechanical milling. The microstructure and nanohardness of the feedstock powders as well as of the resulting coatings were analysed. The results show that the large increase in hardness of the Al powder after mechanical milling is preserved after cold spraying. Good quality coating with low porosity is obtained from milled Al. However, the addition of Al₂O₃ to the Al powder during milling decreases the powder nanohardness. This lower hardness is attributed to non-optimised milling parameters for proper Al₂O₃ embedding and dispersion in Al and results in a lower coating hardness compared with the milled Al coating. The coating produced from the milled Al₂O₃/Al mixture also shows lower particle cohesion and higher amount of porosity. The overall results are promising and it is believed that an optimization of Al milling with Al₂O₃ will allow production of sound coatings with improved hardness. |
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Publication date | 2010-05 |
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In | |
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Language | English |
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Peer reviewed | Yes |
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NRC number | NRCC 52433 |
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NPARC number | 15868894 |
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Export citation | Export as RIS |
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Report a correction | Report a correction (opens in a new tab) |
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Record identifier | 63087b64-0b56-4344-b58a-0199f45f4dc7 |
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Record created | 2010-07-30 |
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Record modified | 2020-04-17 |
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