Evolution of dislocation density, size of subgrains and MX-type precipitates in a P91 steel during creep and during thermal ageing at 600C for more than 100,000h

Author:

Panait Clara Gabriela,Zielińska-Lipiec Anna,Koziel Tomasz,Czyrska-Filemonowicz Aleksandra,Gourgues-Lorenzon Anne-Françoise,Bendick Walter

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference39 articles.

1. Microstructural changes in a 12% chromium steel during creep

2. On the effect of equal-channel angular pressing on creep of tempered martensite ferritic steels

3. Precipitate Stability in Creep Resistant Ferritic Steels-Experimental Investigations and Modelling.

4. L. Cipolla, A. DiGiafrancesco, G. Cumino, S. Caminada, in: I.A. Shibli, S.R. Holdsworth (Eds.), Proc. Creep & Fracture in High Temperature Components: Design & Life Assessment Issues, Lancaster, U.S.A., DEStech Publication, ISBN 1-932078-49-5, 2005, pp. 288–299.

5. Quantification of the Laves phase in advanced 9–12% Cr steels using a standard SEM

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