Microstructural Stability and Strengthening Mechanism of a Ferritic Fe–Cr–Ni–Al Superalloy Containing Cuboidal B2 Nanoparticles
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-27447-3_30
Reference54 articles.
1. Xu YT, Li W, Wang MJ, Zhang XY, Wu Y, Min N, Liu WQ, Jin XJ (2019) Nano-sized MX carbonitrides contribute to the stability of mechanical properties of martensite ferritic steel in the later stages of long-term aging. Acta Mater. 175:148–159.
2. Aghajani A, Somsen C, Eggeler G (2009) On the effect of long-term creep on the microstructure of a 12% chromium tempered martensite ferritic steel. Acta Mater, 57:5093-5106.
3. Kostka A, Tak KG, Hellmig RJ, Estrin Y, Eggeler G (2007) On the contribution of carbides and micrograin boundaries to the creep strength of tempered martensite ferritic steels. Acta Mater. 55:539–550.
4. Pesicka J, Kuzel R, Dronhofer A, Eggeler G (2003)The evolution of dislocation density during heat treatment and creep of tempered martensite ferritic steels. Acta Mater. 51:4847–4862.
5. Niu B, Wang ZH, Wang Q, Pan QF, Dong C, Zhang RQ, Liu HQ, Liaw PK, Xu W (2020) Dual-phase synergetic precipitation in Nb/Ta/Zr co-modified Fe-Cr-Al-Mo alloy. Intermetallics 124:106848.
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