Structure and Phase Composition of Complex Refractory Coating and of the Reaction Zone of Interaction with Single-Crystal Alloy ZhS36-VI after High-Temperature Holds

A complex coating consisting of three layers, i.e., a gas-circulation coating and a two-layer ion-plasma coating with an internal Ni − Cr − Al − Ta − Re − Y layer and an external Al − Ni − Cr − Y layer for protecting single crystal turbine rotor blades from high-temperature oxidation is considered....

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Veröffentlicht in:Metal science and heat treatment 2013-07, Vol.55 (3-4), p.203-208
Hauptverfasser: Kuznetsov, V. P., Lesnikov, V. P., Moroz, E. V., Konakova, I. P., Khadyev, M. S.
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container_end_page 208
container_issue 3-4
container_start_page 203
container_title Metal science and heat treatment
container_volume 55
creator Kuznetsov, V. P.
Lesnikov, V. P.
Moroz, E. V.
Konakova, I. P.
Khadyev, M. S.
description A complex coating consisting of three layers, i.e., a gas-circulation coating and a two-layer ion-plasma coating with an internal Ni − Cr − Al − Ta − Re − Y layer and an external Al − Ni − Cr − Y layer for protecting single crystal turbine rotor blades from high-temperature oxidation is considered. The fine structure and the phase composition of the complex coating and of the reaction zone of interaction with single-crystal alloy ZhS36-VI after high-temperature holds in a range of 1050 − 1300°C for 1–1000 h are studied.
doi_str_mv 10.1007/s11041-013-9606-8
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source Springer Nature - Complete Springer Journals
subjects Characterization and Evaluation of Materials
Chemistry and Materials Science
Classical Mechanics
Coatings
Coatings industry
Engineering Thermodynamics
Heat and Mass Transfer
Materials Science
Metallic Materials
Nickel alloys
Refractories industry
Refractory Alloys
Specialty metals industry
Technology application
Turbines
title Structure and Phase Composition of Complex Refractory Coating and of the Reaction Zone of Interaction with Single-Crystal Alloy ZhS36-VI after High-Temperature Holds
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