Correlation of the M23C6 precipitation morphology with grain boundary characteristics in austenitic stainless steel
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference19 articles.
1. Effects of wave shape and ultrahigh vacuum on elevated temperature low cycle fatigue in type 304 stainless steel
2. A model for life prediction in low-cycle fatigue with hold time
3. Creep-fatigue life prediction in terms of nucleation and growth of fatigue crack and creep cavities
4. Characterization of the cavity nucleation factor for life prediction under creep-fatigue interaction
5. The normalized coffin- manson plot in terms of a new damage function based on grain boundary cavitation under creep- fatigue condition
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1. Inhibition of the intergranular brittleness of HR3C heat-resistant steel by strain-aging induced nano-M23C6 dispersion precipitation;Journal of Materials Science & Technology;2025-04
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3. A correlative approach to evaluating the links between local microstructural parameters and creep initiated cavities;Materials & Design;2024-05
4. Precipitation behavior of the M23C6 phase on the coherent twin boundary of 25Cr-20Ni-Nb-N steel;Materials Letters;2024-05
5. Insights on microstructure evolution of austenite welded joints subjected to creep-fatigue loading;Journal of Materials Research and Technology;2024-05
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