Bibliothek

Ihre E-Mail wurde erfolgreich gesendet. Bitte prüfen Sie Ihren Maileingang.

Leider ist ein Fehler beim E-Mail-Versand aufgetreten. Bitte versuchen Sie es erneut.

Vorgang fortführen?

Exportieren
  • 1
    ISSN: 1573-4889
    Schlagwort(e): nucleation ; carburization ; transient oxidation ; surface pretreatment ; surfacesensitive analytical techniques
    Quelle: Springer Online Journal Archives 1860-2000
    Thema: Maschinenbau
    Notizen: Abstract The initial corrosion reactions on a number of Fe-Cr-Ni and Cr-Ni alloys when exposed in a H2-CH4 gas mixture ofa c =0.8 and $$p_{O_2 } $$ ≈ 10−30 bar at1098 K have been investigated. All alloys were studied with surfaces in boththe cold-worked and electropolished conditions. The experiments, in whichexposure times up to 400 rain were used, were carried out in a conventionalcorrosion rig and also in a small reaction chamber contained within an X-rayphotoelectron spectrometer. The use of XPS, SEM, and TEM showed thattransient α-Cr2O3 layers formed on all alloy surfaces during the heat-up period.On the electropolished surfaces, the oxide layers developed nonuniformly withrespect to microstructure and thickness, whereas homogeneous, compact, andfine-grained α-Cr2O3 layers formed on the cold-worked specimens. Followingan incubation period, M7C3 carbides nucleated on the surfaces; they grew byconsuming the less stable α-Cr2O3 and also through diffusion of metal fromthe alloy substrate. The mode of nucleation of the M7C3 and its rate of growthwere strongly dependent on the character of the transient α-Cr2O3 layers. Afterremoval of α-Cr2O3, carbon ingressed into the substrate where M23C6 wasformed internally. These results are broadly in line with the thermodynamicstability predictions and are discussed in terms of simple models.
    Materialart: Digitale Medien
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
Schließen ⊗
Diese Webseite nutzt Cookies und das Analyse-Tool Matomo. Weitere Informationen finden Sie hier...