Microstructural evolution in austenitic heat-resistant cast steel 35Cr25Ni12NNbRE during long-term service
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference33 articles.
1. Phase instabilities during high temperature exposure of 316 austenitic stainless steel
2. Microstructural characterization of modified 25Cr–35Ni centrifugally cast steel furnace tubes
3. The eutectic carbides and creep rupture strength of 25Cr20Ni heat-resistant steel tubes centrifugally cast with different solidification conditions
4. Transmission electron microscopy of high pressure metal dusted 316 stainless steel
5. Characterisation of 20Cr32Ni1Nb alloys in as-cast and Ex-Service conditions by SEM, TEM and EDX
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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
2. Constructing high-density dislocations by primary (Nb,Ti)(C,N) to induce massive secondary precipitations in austenitic heat-resistant cast steel;Materials Characterization;2024-06
3. Inhibition of the Intergranular Brittleness of Hr3c Heat-Resistant Steel by Strain-Aging Induced Nano-M23c6 Dispersion Precipitation;2024
4. Study of Microstructure Evolution of Austenitic Steel after Long-term Service;2021 3rd International Conference on Artificial Intelligence and Advanced Manufacture;2021-10-23
5. Mechanism of M23C6 → M7C3 carbides reaction of Cr35Ni45Nb type alloy during carburization;Materials Research Express;2021-09-01
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