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Content available remote Struktura wielowarstwowych powłok aluminiowo-krzemowych
PL
W pracy przedstawiono rezultaty badań nad strukturą powłok aluminiowo-krzemowych wytworzonych na powierzchni odlewów ze staliwa żarowy trzy małego. Powłoki te wytwarzano zanurzając próbki w mieszaninie zawierające/proszki aluminium i krzemu oraz topnik i lepiszcze, a następnie wygrzewano w piecu w temp. 900"C. Wytworzone powłoki posiadają zwartą trójstrefową budowę.
EN
This paper presents results of research of multilayer aluminium-silicon coatings. Aluminium-silicon coatings created on high-temperature creep resist cast iron were manufactured by immersion in active mixture containing aluminum and silicon powder, flux and binder. The samples were prepared in this way and annealed at temperature of 900"C. The structure of these coatings is compact and triple zonal.
EN
The effect of laser heat treatment (LHT) of selected steel grades after various chemical heat-treatments (CHT) on the structure and microhardness has been investigated. The specimens were subjected to following CHTs: boronizing (45), silico-boronizing (50HS) and chromizing (NC6). The LHT has been carried out by means of CO2 laser beam of maximum output of 6 kW and applied power 1200-2000 W at scanning rate 500 - 700 mm/min. Considerable refining and homogenization of the structure have been observed. It has been stated that LHT can eliminate the negative effects of the CHT (coarse grain and low hardness of the substrate).
EN
In the article the investigation results of obtaining and properties of the heat-resisting MeCrAlX coatings are presented. The coatings were formed on nickel. In the first stage the CoCr coatings were obtained by the Arc-PVD method (cathodic vacuum arc evaporation). Basic parameters of coatings formation were determined. High efficiency of the Arc-PVD method in the deposition from one or two sources of the complex chemical composition are shown. Relationships between the chemical composition of targets and the chemical composition of the coatings obtained by the Arc-PVD method were determined. Targets with the content of 70 wt. % Co and 30 wt. % Cr. The basic deposition parameters were determined. In the second stage coatings underwent the diffusion chromoaluminizing process. Combining the PVD and diffusion processes allowed to eliminate the substrate detrimental elements: Mo, W and Ti lowering oxidation and 'hot corrosion' resistance from the coatings.
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