Synthesis of self-healing NiAl-Al2O3 composite coatings by electrochemical way

被引:3
|
作者
Troncy, R. [1 ]
Boccaccini, L. [1 ]
Bonnet, G. [1 ]
Montero, X. [2 ]
Galetz, M. C. [2 ]
Pedraza, F. [1 ]
机构
[1] La Rochelle Univ, LaSIE, UMR CNRS 7356, Ave Michel Crepeau, F-17042 La Rochelle 1, France
[2] DECHEMA Forsch Inst, Theodor Heuss Allee 25, D-60486 Frankfurt, Germany
来源
关键词
Composite coating; NiAl-Al2O3; Electrodeposition; Self-healing coating; Oxidation; ALUMINIDE COATINGS; OXIDATION BEHAVIOR; MARTENSITIC-TRANSFORMATION; COMPOSITE COATINGS; NICKEL; AL; SLURRY; SUPERALLOYS; DIFFUSION; ELECTRODEPOSITION;
D O I
10.1016/j.surfcoat.2022.128579
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Nickel aluminide diffusion coatings act like an aluminium reservoir to form protective alumina scales at high temperatures. However, interdiffusion phenomena play a critical role in the metallurgical integrity of these coatings. This work explores a new type of self-healing coating for high temperature oxidation applications. Micro-reservoirs consisting of an aluminium-rich intermetallic core (Al3Ni2) and an aluminium oxide shell are embedded in a nickel aluminide matrix (NiAl). This new type of coating has been synthesized by an electrochemical chemical route to trap the micro-reservoirs in an electrodeposited nickel matrix followed by aluminization via a slurry route. Under high temperature oxidation conditions, the micro-reservoirs allow to form a diffusion barrier and to release Al into the coating matrix. These two simultaneous phenomena make it possible to maintain a sufficient amount of aluminium and ensure the unique formation of alpha-alumina at the surface of the coatings, hence to possibly increase the lifespan of the aluminium diffusion coatings.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Synthesis of self-regenerating NiAl-Al2O3 composite coatings
    Troncy, R.
    Bonnet, G.
    Pedraza, F.
    MATERIALS CHEMISTRY AND PHYSICS, 2022, 279
  • [2] STUDY OF AL2O3 AND NIAL-AL2O3 COATINGS WITH ACOUSTIC-EMISSION ANALYSIS
    NOVAK, R
    CERMAK, F
    KALIVODA, L
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1991, 139 : 264 - 267
  • [3] Synthesis and microstructural characterization of NiAl-Al2O3 functionally gradient composites
    Padmavardhani, D
    Gomez, A
    Abbaschian, R
    INTERMETALLICS, 1998, 6 (04) : 229 - 241
  • [4] Synthesis and characterization of NiAl-Al2O3 nanocomposite powder by mechanical alloying
    Anvari, S. Z.
    Karimzadeh, F.
    Enayati, M. H.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2009, 477 (1-2) : 178 - 181
  • [5] Sintering Behavior and Mechanical Properties of NiAl, Al2O3, and NiAl-Al2O3 Composites
    M. Chmielewski
    S. Nosewicz
    K. Pietrzak
    J. Rojek
    A. Strojny-Nędza
    S. Mackiewicz
    J. Dutkiewicz
    Journal of Materials Engineering and Performance, 2014, 23 : 3875 - 3886
  • [6] Characterization of Al2O3 Samples and NiAl-Al2O3 Composite Consolidated by Pulse Plasma Sintering
    Konopka, Katarzyna
    Krasnowski, Marek
    Zygmuntowicz, Justyna
    Cymerman, Konrad
    Wachowski, Marcin
    Piotrkiewicz, Paulina
    MATERIALS, 2021, 14 (12)
  • [7] Sintering Behavior and Mechanical Properties of NiAl, Al2O3, and NiAl-Al2O3 Composites
    Chmielewski, M.
    Nosewicz, S.
    Pietrzak, K.
    Rojek, J.
    Strojny-Nedza, A.
    Mackiewicz, S.
    Dutkiewicz, J.
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2014, 23 (11) : 3875 - 3886
  • [8] Grain growth in NiAl-Al2O3 in situ composites
    Moshksar, MM
    Doty, H
    Abbaschian, R
    INTERMETALLICS, 1997, 5 (05) : 393 - 399
  • [9] In-situ synthesis of nanostructured NiAl-Al2O3 composite coatings on cast iron substrates by spark plasma sintering of mechanically activated powders
    Beyhaghi, Maryam
    Kashefi, Mehrdad
    Kiani-Rashid, Alireza
    Khaki, Jalil Vandati
    Jonsson, Stefan
    SURFACE & COATINGS TECHNOLOGY, 2015, 272 : 254 - 267