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Pregled bibliografske jedinice broj: 388588

The influence of elevated temperatures on microstructure of cast irons for automotive engine thermo-mechanical loaded parts


Unkić, Faruk; Glavaš, Zoran; Terzić, Katarina
The influence of elevated temperatures on microstructure of cast irons for automotive engine thermo-mechanical loaded parts // RMZ - Materials and geoenvironment, 56 (2009), 1; 9-23 (međunarodna recenzija, članak, znanstveni)


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Naslov
The influence of elevated temperatures on microstructure of cast irons for automotive engine thermo-mechanical loaded parts

Autori
Unkić, Faruk ; Glavaš, Zoran ; Terzić, Katarina

Izvornik
RMZ - Materials and geoenvironment (1408-7073) 56 (2009), 1; 9-23

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
cast irons ; elevated temperatures ; microstructure

Sažetak
The influence of elevated temperatures (550 °C and 850 °C) on microstructure and resistance to oxidation of gray iron quality EN-GJL-250 and ductile irons qualities: EN-GJS-400-18, EN-GJS- 500-7, EN-GJS-SiMo4-1 and EN-GJS-AXNiCr20-2 were analyzed in this paper. The highest resistance to oxidation and microstructure changes at 550 °C and 850 °C shows austenitic ductile iron quality EN-GJS-AXNiCr20-2, followed by ferritic ductile iron quality EN-GJS-SiMo4-1. During oxidation of those cast irons at elevated temperatures two oxide layers over the surface of samples were occurred. Outward layer is easy detachable and consists of iron oxide. Inward layer is tightly connected with metal matrix and prevents progression of oxidation to the samples inside. This oxide layer consists of Fe2SiO4 (fayalite) or complex oxides (Fe, Cr, Ni, Si, and O). Due to favorable high-temperatures properties, those materials are suitable for construction of thermo-mechanical loaded parts of automotive engine, such as turbocharger housings and exhaust manifolds. Ferritic ductile iron quality ENGJS-400-18, pearlitic ductile iron quality EN-GJS-500-7 and pearlitic gray iron quality EN-GJL-250 did not show an adequate resistance to oxidation and microstructure changes at 550 °C and 850 °C.

Izvorni jezik
Engleski

Znanstvena područja
Metalurgija



POVEZANOST RADA


Projekti:
124-0000000-1503 - Skrućivanje metalnih odljevaka (Unkić, Faruk, MZOS ) ( CroRIS)

Ustanove:
Metalurški fakultet, Sisak

Profili:

Avatar Url Faruk Unkić (autor)

Avatar Url Katarina Terzić (autor)

Avatar Url Zoran Glavaš (autor)

Poveznice na cjeloviti tekst rada:

www.dlib.si

Citiraj ovu publikaciju:

Unkić, Faruk; Glavaš, Zoran; Terzić, Katarina
The influence of elevated temperatures on microstructure of cast irons for automotive engine thermo-mechanical loaded parts // RMZ - Materials and geoenvironment, 56 (2009), 1; 9-23 (međunarodna recenzija, članak, znanstveni)
Unkić, F., Glavaš, Z. & Terzić, K. (2009) The influence of elevated temperatures on microstructure of cast irons for automotive engine thermo-mechanical loaded parts. RMZ - Materials and geoenvironment, 56 (1), 9-23.
@article{article, author = {Unki\'{c}, Faruk and Glava\v{s}, Zoran and Terzi\'{c}, Katarina}, year = {2009}, pages = {9-23}, keywords = {cast irons, elevated temperatures, microstructure}, journal = {RMZ - Materials and geoenvironment}, volume = {56}, number = {1}, issn = {1408-7073}, title = {The influence of elevated temperatures on microstructure of cast irons for automotive engine thermo-mechanical loaded parts}, keyword = {cast irons, elevated temperatures, microstructure} }
@article{article, author = {Unki\'{c}, Faruk and Glava\v{s}, Zoran and Terzi\'{c}, Katarina}, year = {2009}, pages = {9-23}, keywords = {cast irons, elevated temperatures, microstructure}, journal = {RMZ - Materials and geoenvironment}, volume = {56}, number = {1}, issn = {1408-7073}, title = {The influence of elevated temperatures on microstructure of cast irons for automotive engine thermo-mechanical loaded parts}, keyword = {cast irons, elevated temperatures, microstructure} }

Uključenost u ostale bibliografske baze podataka::


  • GeoRef
  • Chemical Abstracts
  • METADEX
  • Energy Science and Technology
  • PASCAL
  • COBISS





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