Szczegóły publikacji

Opis bibliograficzny

Microstructural studies of the scale on Sanicro 25 after 25,0000 h of oxidation in steam using advanced electron microscopy techniques / Grzegorz CEMPURA, Aleksandra GIL, Alina Agüero, Marcos Gutiérrez, Adam KRUK, Aleksandra CZYRSKA-FILEMONOWICZ // Surface and Coatings Technology ; ISSN 0257-8972. — 2019 — vol. 377 art. no. 124901, s. 1–10. — Bibliogr. s. 10, Abstr. — Publikacja dostępna online od: 2019-08-15

Autorzy (6)

Słowa kluczowe

steam power plantelectron microscopymicrostructureoxidationSPPSanicro 25

Dane bibliometryczne

ID BaDAP124688
Data dodania do BaDAP2019-10-09
Tekst źródłowyURL
DOI10.1016/j.surfcoat.2019.124901
Rok publikacji2019
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaSurface & Coatings Technology

Abstract

In the present study the effect of long-term oxidation at 700 °C in steam on the microstructure of Sanicro 25® (42Fe22Cr25NiWCuNbN) was investigated in detail by advanced electron microscopy, spectroscopy and FIB-SEM tomography techniques. Owing to its satisfactory creep and oxidation resistance at high temperature the steel is considered suitable for use in reheaters and superheaters in ultra-supercritical coal-fired steam boilers. Microscopic analyses were performed using electron microscopy, while the chemical composition and elemental distribution were analyzed using energy dispersive X-ray spectrometry. The SEM was used for investigation of the scale surface morphology and in-depth steel microstructure. Further analyses were conducted by (S)TEM using a S/TEM Titan Cubed G2 60-300 equipped with the ChemiSTEM (FEI) system. The FIB-SEM tomography allowed for 3D visualisation of the oxide scale surface and the boundaries between the oxide scale and the underlying steel. During steam oxidation of Sanicro 25 (up to 25,000 h) approx. 3 μm thick dual-layered scale consisting mainly of Cr2O3 plates had formed. The thicker outer layer of the scale was enriched with Si and Mn. Beneath the scale, Si underwent internal oxidation which resulted in the formation of numerous SiO2 particles at the scale/steel boundary. The growth of the Cr2O3 scale caused the formation of chromium depleted zone underneath the oxide layer. In the Cr-depleted zone, M23C6 was unstable and dissolved in the austenite. In the underlying bulk steel, M23C6, ε-Cu, Fe2W Laves phase as well as NbX and/or (Nb,Cr)N Z-phase particles had precipitated in the austenitic matrix. The study showed that Sanicro 25 steel is very resistant to steam oxidation at 700 °C, but after 25,000 h it exhibits significant microstructural and chemical composition changes (up to a depth of 20 μm) in comparison to the as-received one.

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fragment książki
#116272Data dodania: 20.9.2018
Microstructure of Sanicro 25 after long-term steam oxidation characterised by advanced electron microscopy techniques / Grzegorz CEMPURA, Aleksander GIL, Alina Agüero, Marcon Gutiérrez, Adam KRUK, Aleksandra CZYRSKA-FILEMONOWICZ // W: EUROCORR 2018 [Dokument elektroniczny] : the annual congress of the European Federation of Corrosion : applied science with constant awareness : 9–13 September, Cracow/Poland. — Wersja do Windows. — Dane tekstowe. — [Kraków : s. n.], [2018]. — Dysk Flash. — ISBN (wersji drukowanej) na podstawie bazy Scopus. — ISBN: 978-151088637-7. — S. 1–9. — Wymagania systemowe: Adobe Reader. — Bibliogr. s. 9, Abstr. — Dostęp również online: http://eurocorr.efcweb.org/2018/abstracts/3/113982.pdf [2020-03-30]
artykuł
#102177Data dodania: 22.11.2016
The microstructure of the Sanicro 25 steel after steam oxidation studied by advanced electron microscopy and spectroscopy methods — Mikrostruktura stali Sanicro 25 po utlenieniu w parze wodnej badana za pomocą zaawansowanych metod mikroskopowych i spektroskopowych / Bogdan RUTKOWSKI, Aleksander GIL, Wiktoria RATUSZEK, Barbara Woźnik, Aleksandra CZYRSKA-FILEMONOWICZ // Inżynieria Materiałowa ; ISSN 0208-6247. — 2016 — R. 37 nr 5, s. 223–227. — Bibliogr. s. 226. — B. Rutkowski - dodatkowa afiliacja International Centre of Electron Microscopy for Materials Science