Effect of creep temperature on Z-phase formation in heat-resistant 9% Cr–3% Co martensitic steel

Author:

Fedoseeva A.,Nikitin I.,Dudova N.,Kaibyshev R.

Funder

Russian Science Foundation

Publisher

Elsevier BV

Subject

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

Reference70 articles.

1. Creep-resistant Steels;Abe,2008

2. Materials for ultrasupercritical coal power plants - boiler materials: Part I;Viswanathan;J. Mater. Eng. Perform.,2001

3. New martensitic steels for fossil power plant: creep resistance;Kaybyshev;Phys. Met. Metallogr.,2010

4. Design of ferritic creep-resistant steels;Bhadeshia;ISIJ Int.,2001

5. High-alloyed martensitic steel grades for boilers in ultra-supercritical power plants Materials for Ultra-Supercritical and Advanced Ultra-Supercritical Power Plants;Hald,2017

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1. Ferritic–Martensitic Steels in Power Industry: Microstructure, Degradation Mechanism, and Strengthening Methods;steel research international;2024-08-26

2. Synergistic Strengthening of High-Cr Martensitic Heat-Resistant Steel and Application of Thermo-Mechanical Treatments;ACTA METALL SIN;2024

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. Plastic Flow Behavior of an Advanced 9Cr Martensitic Heat‐Resistant Steel at High Temperatures;steel research international;2021-12-04

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