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Artigo 2022

Structural characterization of iron oxide grown on 18% Ni-Co-Mo-Ti ferrous base alloy aged under superheated steam atmosphere

Autores

de Souza Martins Cardoso, Andréia
da Igreja, Hugo Ribeiro
Garcia, Pedro Soucasaux Pires
Chales, Rodrigo
Pardal, Juan Manuel
Tavares, Sérgio Souto Maior
Paesano, Andrea
Pichon, Luc

International Journal of Advanced Manufacturing Technology , vol. 119 , no. 3-4 , pp. 1757-1768

ISSN: 02683768

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Autores

Resumo

© 2021, The Author(s), under exclusive licence to Springer-Verlag London Ltd., part of Springer Nature.18% Ni-Co-Mo-Ti ferrous base alloys are special materials, widely used in the industry of isotopic enrichment after specific annealing and aging thermal treatment. The desirable high mechanical properties can then be attained by adequate aging heat treatment, answering the structural materials specifications required by defense applications in aerospace and nuclear engineering. For instance, the isotopic enrichment, in rocket engine envelope application, when associated with high temperature and chemical residues like acidic solutions, can induce corrosion and hydrogen embrittlement in martensitic microstructure. In order to limit these corrosion and hydrogen embrittlement phenomena, adherent and protective layers of iron oxides can be grown on the material’s surface by performing aging treatment in an adequate atmosphere. Due to its application in strategic areas, the characterization of these oxide layers in maraging steels is of importance as well as the understanding of their growth kinetics. For this purpose, several techniques, such as optical microscopy (OM), scanning electron microscopy (SEM), glow discharge optical emission spectroscopy (GDOES), microabrasive wear testing, hardness, grazing incidence X-ray diffraction (GIXRD), and X-ray photoelectron spectroscopy (XPS), have been performed for chemical and structural characterization of the oxide films formed after vapor exposed thermal aging at 510℃. The oxide layer consists of two sub-layers composed by magnetite (Fe3O4) and an external layer of hematite (Fe2O3). A thick interface between the oxide layer and the bulk is enriched in Ti and Mo, whereas the analyses of deep bulk material show an enriched area with Ni and Co.

Palavras-chave

18% Ni-Co-Mo-Ti ferrous base alloys Characterization oxide layers Hydrogen embrittlement Maraging steel

Control and Systems Engineering (ENGI) Software (COMP) Mechanical Engineering (ENGI) Computer Science Applications (COMP) Industrial and Manufacturing Engineering (ENGI)
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