Cilt 3, Sayı 1, Sayfalar 17 - 24

 In this paper iron based oxide dispersion strengthened steel was produced. Fe, Cr, W, Ti, Y2O3 were mixed and blended in high energy ball mill containing stainless steel balls for up to 24 hours in Ar- He atmosphere. These powders were compacted by pressing. Then hot isostatic pressing was applied to obtain a fully dense material. Sintering was carried out at 1150 o C for 1 hour. In order to obtain martensitic microstructure final heat treatment and subsequently oil quenching were applied. To detect the dispersions in the matrix scanning electron microscope was used.

radiation shield,oxide dispersion,steel
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Yazar: Furkan TÜRKER
E-posta: journalmatter@gmail.com
Ülke: Turkey


Bibtex @araştırma makalesi { matter298818, journal = {Matter}, issn = {}, address = {Orta Doğu Teknik Üniversitesi}, year = {}, volume = {3}, pages = {17 - 24}, doi = {}, title = {OXIDE DISPERSION STRENGTHENED NANO SCALED FERRITIC MARTENSITIC STEELS FOR RADIATION SHIELDS}, language = {en}, key = {cite}, author = {TÜRKER, Furkan} }
APA TÜRKER, F . (). OXIDE DISPERSION STRENGTHENED NANO SCALED FERRITIC MARTENSITIC STEELS FOR RADIATION SHIELDS. Matter, 3 (1), 17-24. Retrieved from http://dergipark.gov.tr/matter/issue/28120/298818
MLA TÜRKER, F . "OXIDE DISPERSION STRENGTHENED NANO SCALED FERRITIC MARTENSITIC STEELS FOR RADIATION SHIELDS". Matter 3 (): 17-24 <http://dergipark.gov.tr/matter/issue/28120/298818>
Chicago TÜRKER, F . "OXIDE DISPERSION STRENGTHENED NANO SCALED FERRITIC MARTENSITIC STEELS FOR RADIATION SHIELDS". Matter 3 (): 17-24
RIS TY - JOUR T1 - OXIDE DISPERSION STRENGTHENED NANO SCALED FERRITIC MARTENSITIC STEELS FOR RADIATION SHIELDS AU - Furkan TÜRKER Y1 - 2017 PY - 2017 N1 - DO - T2 - Matter JF - Journal JO - JOR SP - 17 EP - 24 VL - 3 IS - 1 SN - - M3 - UR - Y2 - 2017 ER -
EndNote %0 Matter OXIDE DISPERSION STRENGTHENED NANO SCALED FERRITIC MARTENSITIC STEELS FOR RADIATION SHIELDS %A Furkan TÜRKER %T OXIDE DISPERSION STRENGTHENED NANO SCALED FERRITIC MARTENSITIC STEELS FOR RADIATION SHIELDS %D 2017 %J Matter %P - %V 3 %N 1 %R %U