Formation of Two-Phase Zones During Internal Oxidation of Binary Alloys
Author:
Affiliation:
1. Kherson State Maritime,Navigation Faculty,Kherson,Ukraine
2. National Technical University of Ukraine “Igor Sikorsky KPI”,Electronic Faculty,Department of Electronic Devices and Systems,Kyiv,Ukraine
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10380266/10380327/10380351.pdf?arnumber=10380351
Reference22 articles.
1. Electron-Beam and Plasma Oxidation-Resistant and Thermal-Barrier Coatings Deposited on Turbine Blades Using Cast and Powder Ni(Co)CrALY(Si) Alloys I. Fundamentals of the Production Technology, Structure, and Phase Composition of Cast NiCrAlY Alloys
2. Electron-Beam and Plasma Oxidation-Resistant and Thermal-Barrier Coatings Deposited on Turbine Blades Using Cast and Powder Ni(Co)CrAlY(Si) Alloys Produced by Electron-Beam Melting II. Structure and Chemical and Phase Composition of Cast CoCrAlY Alloys
3. Electron-Beam and Plasma Oxidation-Resistant and Thermal-Barrier Coatings Deposited on Turbine Blades Using Cast and Powder Ni(Co)CrAlY(Si) Alloys Produced by Electron Beam Melting IV. Chemical and Phase Composition and Structure of Cocralysi Powder Alloys and Their Use;Grechanyuk;Powder Metallurgy and Metal Ceramics,2022
4. Electron-Beam and Plasma Oxidation-Resistant and Thermal-Barrier Coatings Deposited on Turbine Blades Using Cast and Powder Ni (Co)CrAlY (Si) Alloys Produced by Electron Beam Melting III. Formation, Structure, and Chemical and Phase Composition of Thermal-Barrier Ni(Co)CrAlY/ZrO2-Y2O3 Coatings Produced by Physical Vapor Deposition in One Process Cycle;Grechanyuk;Powder Metallurgy and Metal Ceramics,2022
5. Сopper and Molybdenum-Based Nanocrystalline Materials
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