Detail publikace
Remelting of M-CrAlY Air Plasma Sprayed Coatings by Means of Aluminium Cold Rolling and Conventional Heat Treatment
ČELKO, L. ŘIČÁNKOVÁ, V. KLAKURKOVÁ, L. ZÁBRANSKÝ, K. ŠVEJCAR, J.
Český název
Remelting of M-CrAlY Air Plasma Sprayed Coatings by Means of Aluminium Cold Rolling and Conventional Heat Treatment
Anglický název
Remelting of M-CrAlY Air Plasma Sprayed Coatings by Means of Aluminium Cold Rolling and Conventional Heat Treatment
Typ
abstrakt
Jazyk
en
Originální abstrakt
Air plasma spray technique was used to produce NiCrAlY and CoNiCrAlY coatings on the Inconel 713 LC substrate. A certain amount of imperfectly melted powder particles, voids and oxides was also present in plasma sprayed coating microstructure. The aluminium sheet of 99,999 purity was cladded by means of cold rolling onto the coating surface. After the cladding of aluminium was the samples annealed at the temperatures of 650, 660 and 700oC for different dwell time in argon atmosphere. It was found that the temperature significantly affects the aluminium, which enable to create the NiAl and NiAl phases within the original plasma sprayed coating region. Annealing time also affects remelting of the Inconel 713 LC substrate surface. The microstructure of coatings was recorded by scanning electron microscope. Coating thickness and amount of voids were measured by means of image analysis. The microstructure of coating was recored by scanning electron microscope. Coating thickness and amount of voids were measured by means of image analysis. The concentration of phases was estimated by energy dispersive microanalysis.
Český abstrakt
Air plasma spray technique was used to produce NiCrAlY and CoNiCrAlY coatings on the Inconel 713 LC substrate. A certain amount of imperfectly melted powder particles, voids and oxides was also present in plasma sprayed coating microstructure. The aluminium sheet of 99,999 purity was cladded by means of cold rolling onto the coating surface. After the cladding of aluminium was the samples annealed at the temperatures of 650, 660 and 700oC for different dwell time in argon atmosphere. It was found that the temperature significantly affects the aluminium, which enable to create the NiAl and NiAl phases within the original plasma sprayed coating region. Annealing time also affects remelting of the Inconel 713 LC substrate surface. The microstructure of coatings was recorded by scanning electron microscope. Coating thickness and amount of voids were measured by means of image analysis. The microstructure of coating was recored by scanning electron microscope. Coating thickness and amount of voids were measured by means of image analysis. The concentration of phases was estimated by energy dispersive microanalysis.
Anglický abstrakt
Air plasma spray technique was used to produce NiCrAlY and CoNiCrAlY coatings on the Inconel 713 LC substrate. A certain amount of imperfectly melted powder particles, voids and oxides was also present in plasma sprayed coating microstructure. The aluminium sheet of 99,999 purity was cladded by means of cold rolling onto the coating surface. After the cladding of aluminium was the samples annealed at the temperatures of 650, 660 and 700oC for different dwell time in argon atmosphere. It was found that the temperature significantly affects the aluminium, which enable to create the NiAl and NiAl phases within the original plasma sprayed coating region. Annealing time also affects remelting of the Inconel 713 LC substrate surface. The microstructure of coatings was recorded by scanning electron microscope. Coating thickness and amount of voids were measured by means of image analysis. The microstructure of coating was recored by scanning electron microscope. Coating thickness and amount of voids were measured by means of image analysis. The concentration of phases was estimated by energy dispersive microanalysis.
Klíčová slova česky
plasmové nástřiky; NiCrAlY; CoNiCrAlY; difuze; Inconel 713 LC
Klíčová slova anglicky
plasma spray; NiCrAlY; CoNiCrAlY; diffusion; Inconel 713 LC
Vydáno
05.09.2011
Nakladatel
IInstitute of Technical Sciences of the Serbian Academy of Sciences and Arts
Místo
Belgrade, Serbia
Kniha
YUCOMAT 2011
Číslo edice
13
Strany od–do
103–103
Počet stran
1