Effect of the synthesis route on the microstructure of HfxTi(1−x)NbVZr refractory high-entropy alloys

DOI

Data set from Moussa M., Gorsse S., Huot J. and Bobet J. L. Effect of the synthesis route on the microstructure of HfxTi(1−x)NbVZr refractory high-entropy alloys. Metals (Basel, Switz.) 2023 vol.13, n°2, p.343 (12 p.). HAL : https://hal.science/hal-04035263

Dataset production context : In the present work, the effects of (i) Ti replacement by Hf and (ii) the synthesis method on microstructure and crystal structure evolution in the high-entropy alloy HfxTi(1−x)NbVZr are reported. The results of scanning electron microscopy and X-ray diffraction analysis of alloys prepared by both arc-melting and induction-melting are compared with theoretical thermodynamic calculations using the CALPHAD approach. The non-equilibrium thermodynamic calculations agree well with the experimental observations for the arc-melted alloys: a mixture of body-centered cubic (BCC) and cubic C15 Laves phases occurs for low-Ti-concentration alloys and a single BCC phase is obtained for high-Ti alloys. The agreement is not as good when using the induction-melting method: equilibrium solidification calculations predict that the most stable state is a phase mixture of BCC, hexagonal close-packed, and a cubic C15 Laves phase, while experimentally only one BCC and one hexagonal C14 Laves phase were found. The estimation of the exact cooling rate and the lack of a thermodynamic database can explain the difference. In addition, for both methods, the thermodynamic calculation confirms that for a high Ti concentration, the BCC phase is stable, whereas phase separation is enhanced with a higher Hf concentration.

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Identifier
DOI https://doi.org/10.57745/LSA1HX
Related Identifier https://doi.org/10.3390/met13020343
Metadata Access https://entrepot.recherche.data.gouv.fr/oai?verb=GetRecord&metadataPrefix=oai_datacite&identifier=doi:10.57745/LSA1HX
Provenance
Creator Moussa, Maria; Gorsse, Stéphane ORCID logo; Huot, Jacques ORCID logo; Bobet, Jean-Louis ORCID logo
Publisher Recherche Data Gouv
Contributor TOULIN, Stéphane; Toulin, Stéphane; Université du Québec à Trois-Rivières; Centre National de la Recherche Scientifique; Université de Bordeaux; Bordeaux INP; Entrepôt-Catalogue Recherche Data Gouv
Publication Year 2023
Funding Reference Région Nouvelle Aquitaine ; NSERC discovery grant
Rights etalab 2.0; info:eu-repo/semantics/openAccess; https://spdx.org/licenses/etalab-2.0.html
OpenAccess true
Contact TOULIN, Stéphane (CNRS - Personnels des unités)
Representation
Resource Type Dataset
Format text/plain; text/tab-separated-values
Size 2191; 470; 368; 596; 2878
Version 1.0
Discipline Chemistry; Physics; Natural Sciences