Effect of thermal cycling induced phosphorus grain boundary segregation on embrittlement of welding heat affected zones in 2·25Cr–1Mo steel
Author:
Publisher
Informa UK Limited
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
http://www.tandfonline.com/doi/pdf/10.1179/1743284713Y.0000000482
Reference39 articles.
1. Effect of morphology of martensite–austenite phase on fracture of weld heat affected zone in vanadium and niobium microalloyed steels
2. Mechanisms and modeling of cleavage fracture in simulated heat-affected zone microstructures of a high-strength low alloy steel
3. Micro-fracture behaviour induced by M-A constituent (Island Martensite) in simulated welding heat affected zone of HT80 high strength low alloyed steel
4. Microstructural characteristics and toughness of the simulated coarse grained heat affected zone of high strength low carbon bainitic steel
5. A toughness study of the weld heat-affected zone of a 9Cr–1Mo steel
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1. Cooling Rate Dependency of Retained δ-Ferrite in the Coarse-Grained Heat-Affected Zone of P92 Heat-Resistant Steel;Metallurgical and Materials Transactions A;2024-07-22
2. Synergistic effect of residual stress and phosphorus grain-boundary segregation on embrittlement of coarse-grained heat-affected zone in a novel Ni-Cr-Mo reactor pressure vessel steel;Engineering Failure Analysis;2022-02
3. Progress on effects of alloying elements on bainite formation and strength and toughness of high strength steel weld metal;Materials Research Express;2021-03-01
4. Highly Enhanced Hot Ductility Performance of Advanced SA508-4N RPV Steel by Trace Impurity Phosphorus and Rare Earth Cerium;Metals;2020-11-28
5. Hardening Embrittlement and Non-Hardening Embrittlement of Welding-Heat-Affected Zones in a Cr-Mo Low Alloy Steel;Metals;2018-06-01
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