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Wyświetlanie 1-2 z 2
Tytuł:
The quality assurance of cast and wrought aero jet engine components made from Ni-base superalloys with using of quantitative metallography methods and alloys lifetime prediction
Autorzy:
Belan, Juraj
Kuchariková, Lenka
Mazur, Magdalena
Tillová, Eva
Hanusová, Patrícia
Powiązania:
https://bibliotekanauki.pl/articles/104037.pdf
Data publikacji:
2019
Wydawca:
Stowarzyszenie Menedżerów Jakości i Produkcji
Tematy:
quality assurance
cast Ni-base superalloys
wrought Ni-base superalloys
turbine blades
turbine disc
quantitative metallography
zapewnienie jakości
superstopy na bazie Ni
łopatki turbin
tarcza turbiny
metalografia ilościowa
Opis:
The Ni-base superalloys are used in the aircraft industry for the production of aero engine most stressed parts, turbine blades or turbine discs. Quality of aero jet engine components has a significant influence on the overall lifetime of a jet engine as itself as well as the whole airplane. From this reason a dendrite arm spacing, grain size, morphology, number and value of γ' - phase are very important structural characteristics for blade or discs lifetime prediction. The methods of quantitative metallography are very often used for evaluation of structural characteristics mentioned above. The high-temperature effect on structural characteristics and application of quantitative methods evaluation are presented in this paper. The two different groups of Ni-base alloys have been used as experimental material: cast alloys ZhS6K and IN713LC, which are used for small turbine blades production and wrought alloys EI 698VD and EI 929, which are used for turbine disc production. Selected alloys have been evaluated in the starting stage and after applied heattreatment at 850°C for 24 hrs. This applied heat-treatment causes structural changes in all alloys groups. In cast alloy dendritic structure is degraded and gamma prime average size has grown what has a negative influence on turbine blade creep rupture life. Wrought alloys show partially grain boundary melting and grain size changed due to recrystallization what causes mechanical properties decreasing - ultimate tensile strength mainly.
Źródło:
Quality Production Improvement - QPI; 2019, 1, 1; 222-229
2657-8603
Pojawia się w:
Quality Production Improvement - QPI
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
The effect of cooling rate on selected structural parameters of advanced cast Ni – base superalloys
Autorzy:
Belan, J.
Vaško, A.
Kuchariková, L.
Švecová, I.
Powiązania:
https://bibliotekanauki.pl/articles/114811.pdf
Data publikacji:
2017
Wydawca:
Stowarzyszenie Menedżerów Jakości i Produkcji
Tematy:
Ni-base superalloys
quantitative metallography methods
cooling rate
secondary dendrite arms spacing
gamma prime evaluation
carbide evaluation
heat treatment
superstopy na bazie niklu
obróbka cieplna
rozstaw ramion dendrytu
rozmiar węglików
rozkład węglików
metody metalografii ilościowej
Opis:
The Ni – base superalloys are used in aircraft industry for production of aero engine most stressed parts, as are turbine blades or turbine discs. The most stressing factor at Ni – base superalloys loading or working conditions are high temperature range of 700°C up to 850°C and, of course, centrifugal forces, and small vibrations, which produce bending of turbine blades inserted into turbine discs. All these factors cause various forms of microstructure degradation closely connected with decreasing of mechanical properties and shortening of working life as well. From this reason a dendrite arm spacing, carbides size and distribution, morphology, number and value of γ’ - phase are very important structural characteristics for blade lifetime prediction as well as aero engine its self. In this article are used methods of quantitative metallography for evaluation of structural characteristics mentioned above on experimental materials – Ni base superalloys ŽS6K and Inconel IN 738. The high temperature effect represented here by heat treatment at 800°C for 10 hours, and cooling rate, here represented by three various cooling mediums as water, air, and oil, on structural characteristics and application of quantitative methods evaluation with using of SEM are presented in this paper.
Źródło:
Zeszyty Naukowe. Quality. Production. Improvement; 2017, 1 (6); 20-30
2544-2813
Pojawia się w:
Zeszyty Naukowe. Quality. Production. Improvement
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-2 z 2

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