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Reference: Macías-Delgado, J, Leguey, T, de Castro, V et al., (2016). Microstructure and tensile properties of ODS ferritic steels mechanically alloyed with Fe2Y. Nuclear Materials and Energy, 9, 372-377.Citable link to this page:

 

Microstructure and tensile properties of ODS ferritic steels mechanically alloyed with Fe2Y

Abstract: An oxide dispersion strengthened ODS ferritic steel has been produced by mechanical alloying of Fe–14Cr–2W–0.2Ti (wt.%) prealloyed powder with 0.55 (wt.%) Fe2Y intermetallic particles and consolidated by hot isostatic pressing. The microstructure after thermal treatments confirms the homogeneous precipitation of Y-Ti oxides with nanometric sizes. Tensile properties as a function of the testing temperature from room temperature to 973 K have been measured and the results are discussed with respect to similar ODS ferritic steels fabricated by a powder metallurgy route using Y2O3 powder.

Publication status:PublishedPeer Review status:Peer reviewedVersion:Publisher's versionDate of acceptance:2016-09-26 Funder: Ministerio de Economía y Competitividad   Funder: Comunidad de Madrid   Funder: European Commission   Funder: European Research Council   Notes:© 2016 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license.

Bibliographic Details

Publisher: Elsevier

Publisher Website: http://www.elsevier.com

Journal: Nuclear Materials and Energysee more from them

Publication Website: http://www.journals.elsevier.com/nuclear-materials-and-energy/

Volume: 9

Extent: 372-377

Issue Date: 2016-10-14

pages:372-377Identifiers

Doi: https://doi.org/10.1016/j.nme.2016.09.019

Eissn: 2352-1791

Uuid: uuid:5a3e94e3-b934-47bc-8685-45d53e3d472e

Urn: uri:5a3e94e3-b934-47bc-8685-45d53e3d472e

Pubs-id: pubs:657193 Item Description

Type: journal-article;

Version: Publisher's versionKeywords: Oxide dispersion strengthened steels Nanoparticles Transmission electron microscopy Mechanical properties Fe2Y

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Author: Macías-Delgado, J - - - Leguey, T - - - de Castro, V - - - Auger, M - institutionUniversity of Oxford Oxford, MPLS, Materials -

Source: https://ora.ox.ac.uk/objects/uuid:5a3e94e3-b934-47bc-8685-45d53e3d472e



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