Multivariate Analysis of the Influence of Process Parameters on Suspension Plasma-Sprayed Coatings

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TitreMultivariate Analysis of the Influence of Process Parameters on Suspension Plasma-Sprayed Coatings
Type de publicationConference Paper
Year of Publication2018
AuteursZhao Y, Peyraut F, Planche M-pierre, Liao H, Montavon G, Ilavsky J, Lasalle A, Allimant A
EditorAzarmi F, Balani K, Eden T, Hussain T, Lau YC, Li H, Shinoda K, Toma FL, Veilleux J
Conference NameINTERNATIONAL THERMAL SPRAY CONFERENCE AND EXPOSITION (ITSC 2018)
PublisherASM Int, Thermal Spray Soc; ASM Int; German Welding Soc; IIW
Conference Location9503 KINSMAN RD, MATERIALS PARK, OH 44073 USA
ISBN Number978-1-62708-160-3
Résumé

Suspension plasma spray (SPS) is far more complicated than conventional plasma spray and requires a deep knowledge about the influence of process parameters and their correlations. In this study, YSZ coatings were manufactured by SPS with six different process parameters such as plasma power, suspension mass load, original powder size, substrate surface topology, spray distance, and spray step. Afterwards, the porosity of as-prepared coatings was investigated by image method and X-ray transmission technique. A multivariate analysis on the collected experimental data was carried out by employing mathematical statistics methods. The results showed that: 1) Coating porosity has a negative correlation with plasma power and suspension mass load and a positive correlation with the original powder size, spray distance, spray step, and substrate roughness; 2) Spraying distance is the main factor affecting to coating porosity, followed by suspension mass load and substrate surface roughness, respectively. A linear model for porosity prediction was developed and was verified by experiments. The mechanism by which process parameters influence coating porosity is also discussed.