W artykule przedstawiono wyniki badań dotyczące charakterystyki odporności na utleniania natryskanej plazmowo powłoki NiCrAlY o różnym sposobie przygotowania powierzchni natryskanej plazmowo na stopie Inconel 625. Analizie poddano powłoki w stanie po natryskiwaniu cieplnym oraz po procesie szlifowania. Ocenie poddano odporność na utlenianie obu typu warstw w warunkach testu w temperaturze 1000°C przez czas 1000 godzin. Zakres badań obejmował analizę stanu warstwy wierzchniej powłok przy użyciu badań dyfrakcyjnych składu fazowego oraz badań mikroskopowych pozwalających na ocenę budowy warstwy.
EN
The article presents the results of the examination related to characterization of oxidation resistance of NiCrAlY coatings with different types of top-surface conditions, deposited on substrate alloy of Inconel 625 type. Coated specimens with conditions as sprayed and after grinding process were analyzed. Evaluation of oxidation resistance of both types of coatings was made during test of oxidation at temperature 1000°C by 1000 hours of exposure. The range of investigations included analysis of top surface of coatings by XRD characterization of formed oxides types and microscopic investigations of coatings morphology.
This article presents the results of a research on the behavior of NiCrAlY coating obtained by the LENS method on austenitic stainless steel type 316L under long-term annealing conditions at 1000°C for 25, 100 and 250 hours. The morphology of the NiCrAlY layer as a function of annealing time and temperature was characterized. The chemical composition and distribution of alloying elements were evaluated using scanning microscopy and micro-area chemical composition analysis. It was revealed that NiCrAlY coatings deposited by LENS method are characterized by good metallurgical quality. The long-term annealing of the NiCrAlY coating led to microstructural changes in the form of the disappearance of the original dendritic structure and the formation of a solid solution of nickel with chromium and a small amount of aluminum, as well as chromium α-Cr precipitates and Ni-Y-type phases. The effect of increasing iron concentration in the coating due to diffusion-to-core processes was also found.
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