Mechanistic insights into the transformation processes in Z-phase strengthened 12% Cr steels

Author:

Rashidi M.,Golpayegani A.,Sheikh S.,Guo S.,Andrén H.-O.,Liu F.

Funder

Swedish Energy Agency

Research Foundation of VGB

EU FP7 Z-ULTRA

LIGHTer

Strategic Innovation Areas

VINNOVA

Formas

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference31 articles.

1. Optimised microstructure for increased creep rupture strength of MarBN steels;Plesiutschnig;Mater. High Temp.,2015

2. Corrosion behavior of 9–12% Cr ferritic-martensitic steels in supercritical water;Tan;Corros. Sci.,2010

3. Influence of Z-phase on Long-term Creep Stability of Martensitic 9 to 12% Cr Steels;Danielsen,2009

4. Microstructure and long-term creep properties of 9–12% Cr steels;Hald;Int. J. Press. Vessel. Pip.,2008

5. Damage mechanics-based creep model for 9–10% Cr ferritic steels;Oruganti;Acta Mater.,2011

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2. Mechanical Properties and Creep Behavior of MX-Type Precipitates Strengthened Heat Resistant Martensite Steel;ACTA METALL SIN;2022

3. Modeling of thermo-mechanical treatment for formation of stable particles in a low-carbon 9% Cr martensitic steel;PROCEEDINGS OF THE INTERNATIONAL CONFERENCE “PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY”;2022

4. Effect of thermo-mechanical treatment on short-term mechanical properties of low-carbon 9% Cr martensitic steel;PROCEEDINGS OF THE INTERNATIONAL CONFERENCE “PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY”;2022

5. Solubility product of a Nb–N bearing austenitic stainless-steel biomaterial;Journal of Materials Research and Technology;2021-11

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