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Manufacturing nanostructured YSZ coatings by suspension plasma spraying (SPS) : effect of injection parameters
Meillot E., Vert R., Caruyer C., Damiani D., Vardelle M.
Journal of Physics D: Applied Physics 44 (2011) 94008-1-94008-8 - http://hal.archives-ouvertes.fr/hal-00591973
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Manufacturing nanostructured YSZ coatings by suspension plasma spraying (SPS) : effect of injection parameters
E. Meillot 1, R. Vert 2, C. Caruyer 1, D. Damiani 1, Michel Vardelle () 2
1 :  CEA Le Ripault (CEA Le Ripault)
CEA : DAM/RIPAULT
BP 16 37260 Monts
France
2 :  Science des Procédés Céramiques et de Traitements de Surface (SPCTS)
http://www.unilim.fr/spcts/
CNRS : UMR6638 – Université de Limoges – Ecole Nationale Supérieure de Céramique Industrielle – Institut des Procédés Appliqués aux Matériaux
SPCTS, Centre Européen de la Céramique, 12 Rue Atlantis, 87068 LIMOGES CEDEX
France
Axe 2 : procédés de traitements de surface
The suspension plasma spraying process is investigated using shadow imaging techniques to appreciate the different trajectories of the liquid jet interacting with a dc high-energy plasma flow. Then, the modelling of different liquid injections (isolated droplet, train of droplets and continuous jet) helps us to determine which injection type must be preferred. From that, coating depositions have been carried out with yttria zirconia suspension. Trajectory deviations at impact have been measured depending on the injection pressure and injection location. Coatings have been realized under the same operating investigations and their microstructures and mechanical properties have been characterized
Anglais

Journal of Physics D: Applied Physics
Publisher Institute of Physics: Hybrid Open Access
ISSN 0022-3727 (eISSN : 1361-6463)
internationale
2011
44
94008-1-94008-8

Liquid – Instabilities – Hardness – Films