Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/27003
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dc.contributor.authorChankitmunkong, S-
dc.contributor.authorWang, F-
dc.contributor.authorLimmaneevichitr, C-
dc.contributor.authorEskin, D-
dc.date.accessioned2023-08-20T09:08:36Z-
dc.date.available2023-08-20T09:08:36Z-
dc.date.issued2023-08-18-
dc.identifierORCID iD: Feng Wang https://orcid.org/0000-0002-1597-3708; Dmitry Eskin 0000-0002-0303-2249.-
dc.identifier.citationChankitmunkong, S. et al. (2023) 'Microstructure, hardening and mechanical properties of hypoeutectic Al-Ce-Ni alloys with Zr and Zr+Sc additions and the effect of ultrasonic melt processing', Advanced Engineering Materials, 0 (ahead-of-print), pp. 1 - 17. doi: 10.1002/adem.202301045.en_US
dc.identifier.issn1438-1656-
dc.identifier.urihttps://bura.brunel.ac.uk/handle/2438/27003-
dc.descriptionThis article has been accepted for publication and undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process, which may lead to differences between this version and the Version of Record. Please cite this article as doi: 10.1002/adem.202301045. The version of record will be available soon under a Creative Commons (CC BY) Attribution License.-
dc.description.abstractTernary Al-Ce-Ni alloys have a potential in the manufacture of automotive and airspace components, as well as in replacing traditional aluminum alloys in high-temperature applications, which is determined by the formation of fine and thermally stable Al11Ce3 and Al3Ni eutectic. In this study we successfully improved the microstructure and mechanical properties of a hypoeutectic Al4Ce2Ni alloy by using Zr and Zr+Sc additions combined with ultrasonic melt processing and dispersion hardening. As a result, the grain structure of the as-cast alloys was significantly refined and the annealing at 350 °C led to a considerable hardening effect, especially in the alloys with Zr+Sc additions (doubling the hardness). Al3Zr and Al3(Zr,Sc) coherent particles were identified as hardening nano-precipitates. The compressive mechanical testing at room and elevated temperatures showed that the additions of Zr and Zr+Sc improved the strength with the additional increase caused by ultrasonic melt processing.en_US
dc.description.sponsorshipThe authors gratefully acknowledge FE-SEM Centre, School of Engineering, King Mongkut’s Institute of Technology Ladkrabang and the financial support under project number RE-KRIS/FF66/29. D.E. acknowledges the financial support from EPSRC (UK) under project grant PAAM (EP/W00593X/1).en_US
dc.format.extent1 - 17-
dc.format.mediumPrint-Electronic-
dc.languageEnglish-
dc.language.isoen_USen_US
dc.publisherWiley-VCHen_US
dc.rightsOpen Access. Copyright © 2023 Wiley-VCH GmbH. All Rights Reserved. This is the peer reviewed version of the following article: Microstructure, hardening and mechanical properties of hypoeutectic Al-Ce-Ni alloys with Zr and Zr+Sc additions and the effect of ultrasonic melt processing, which has been published in final form at https://doi.org/10.1002/adem.202301045. This article may be used for non-commercial purposes in accordance with John Wiley & Sons Ltd's Terms and Conditions for Self-Archiving (see: https://authorservices.wiley.com/author-resources/Journal-Authors/licensing/self-archiving.html).-
dc.rights.urihttps://authorservices.wiley.com/author-resources/Journal-Authors/licensing/self-archiving.html).-
dc.subjectAl-Ce-Ni-Sc-Zren_US
dc.subjectaluminum alloysen_US
dc.subjectelectrical conductivityen_US
dc.subjectnanocompositesen_US
dc.subjectultrasonic melt processingen_US
dc.titleMicrostructure, hardening and mechanical properties of hypoeutectic Al-Ce-Ni alloys with Zr and Zr+Sc additions and the effect of ultrasonic melt processingen_US
dc.typeArticleen_US
dc.identifier.doihttps://doi.org/10.1002/adem.202301045-
dc.relation.isPartOfAdvanced Engineering Materials-
pubs.issue00-
pubs.publication-statusPublished online-
pubs.volume0-
dc.identifier.eissn1527-2648-
dc.rights.holderWiley-VCH GmbH-
Appears in Collections:Brunel Centre for Advanced Solidification Technology (BCAST)

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