Microstructural investigation of dual-phase boride/carbide high-entropy ceramics
Ines Moussaoui, Sara
Naughton Duszová, Annamária
Hrubovčáková, Monika
Vojtko, Marek
Windisch, Mark
Pinke, Péter
Dusza, János
Horváth, Richárd
Lukács, Judit
Stadler, Róbert Gábor
Varga, Viktória Annamária
2026-06-30T07:20:53Z
2026-06-30T07:20:53Z
2024
http://hdl.handle.net/20.500.14044/39311
Reactive sintered (Ti-Zr-Nb-Ta-Hf)B2 - (Ti-Zr-Nb-Ta-Hf)C dual-phase, high-entropy ceramics
were prepared via a two-step spark plasma sintering (SPS) process at a maximum temperature of
2100°C, with a sintering time of 5 minutes at an applied pressure of 70 MPa. Microstructure
analyses revealed no structural defects in the form of large pores, microcracks, or large grain
clusters. The composite shows high relative density (~ 99%), and relatively homogeneous
microstructure with average grain sizes of the boride and carbide phases 3 μm and 2 μm,
respectively, with a negligible oxide content (HfO2/ZrO2 < 1wt%). It was found that Ti, Zr, and
Nb elements are predominantly enriched in the boride phase, whereas Ta and Hf are concentrated
more in the carbide phase.
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Microstructural investigation of dual-phase boride/carbide high-entropy ceramics
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Open access
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Óbudai Egyetem
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2024. November 14.
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Budapest
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Bánki Donát Gépész és Biztonságtechnikai Mérnöki Kar
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Óbudai Egyetem
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Műszaki tudományok - anyagtudományok és technológiák
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ceramic materials
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dual-phase boride/carbide
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high-entropy ceramics
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Konferenciaközlemény
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Mérnöki Szimpózium a Bánkin (Proceeding of the Engineering Symposium at Bánki)