Investigation of creep performance degradation mechanism of service exposed P92 steel and microstructural characterization of FGHAZ
Author:
Funder
the Natural Science Foundation of Jiangsu Province
Publisher
Springer Science and Business Media LLC
Subject
Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Link
https://link.springer.com/content/pdf/10.1007/s40194-023-01624-1.pdf
Reference44 articles.
1. Han H, Shen J (2021) A composite model for residual creep life assessment in T/P92 heat-resistant steel. Int J Press Vessels Pip 191:104352
2. Maruyama K, Sekido N, Yoshimi K (2021) Changes in strengthening mechanisms in creep of 9Cr-1.8W-0.5Mo-VNb steel tested over wide ranges of creep conditions. Int J Press Vessels Pip 190:104312
3. Riedlsperger F, Krenmayr B, Zuderstorfer G et al (2020) Application of an advanced mean-field dislocation creep model to P91 for calculation of creep curves and time-to-rupture diagrams. Materialia 12:100760
4. Xiao B, Lianyong X, Zhao L et al (2019) Deformation-mechanism-based creep model and damage mechanism of G115 steel over a wide stress range. Mater Sci Eng A 743:280–293
5. Dak G, Pandey C (2020) A critical review on dissimilar welds joint between martensitic and austenitic steel for power plant application. J Manuf Process 58:377–406
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