DOI | Trouver le DOI : https://doi.org/10.1016/j.cossms.2014.07.003 |
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Auteur | Rechercher : Zhu, Hanliang; Rechercher : Wei, Tao; Rechercher : Carr, David; Rechercher : Harrison, Robert; Rechercher : Edwards, Lyndon; Rechercher : Seo, Dongyi1; Rechercher : Maruyama, Kouichi; Rechercher : Dargusch, Matthew S. |
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Affiliation | - Conseil national de recherches du Canada. Aérospatiale
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Format | Texte, Article |
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Sujet | Alloys; Creep; Creep resistance; High temperature applications; Microstructural evolution; Microstructure; Radiation damage; Radiation effects; Titanium; Titanium compounds; Advanced nuclear system; Extreme environment; Heat treatment process; Microstructural design; Microstructural features; Optimal microstructure; Structural applications; Titanium aluminide alloy; Titanium alloys |
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Résumé | Microstructure plays an important role in strengthening of metallic materials. Various microstructures can be developed in titanium aluminide (TiAl) alloys, which can enable different combinations of properties for various extreme environments in advanced nuclear systems. In the present paper the mechanisms for microstructural strengthening and the effects of various microstructural features on thermal creep and radiation damage resistance of TiAl alloys are reviewed and compared. On the basis of the results, the evidence-based optimum microstructure for the best combination of thermal creep and radiation damage resistance of TiAl alloys is proposed. The heat treatment processes for manufacturing the optimal microstructure are also discussed. |
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Date de publication | 2014-09-19 |
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Dans | |
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Langue | anglais |
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Publications évaluées par des pairs | Oui |
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Numéro NPARC | 21275565 |
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Exporter la notice | Exporter en format RIS |
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Signaler une correction | Signaler une correction (s'ouvre dans un nouvel onglet) |
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Identificateur de l’enregistrement | d7083906-2ccb-4d1a-a1f5-7c219ccf30c1 |
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Enregistrement créé | 2015-07-14 |
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Enregistrement modifié | 2020-04-22 |
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