Crack-Mitigating Strategy in Directed Energy Deposition of Refractory Complex Concentrated CrNbTiZr Alloy

Autor
Kout, Jan
Krajňák, Tomáš
Salvetr, Pavel
Podany, Pavel
Brazda, Michal
Dzugan, Jan
Datum vydání
2025Publikováno v
MaterialsNakladatel / Místo vydání
MDPIRočník / Číslo vydání
18 (15)ISBN / ISSN
ISSN: 1996-1944ISBN / ISSN
eISSN: 1996-1944Informace o financování
MSM//EH22_008/0004591
GA0//GA21-14030S
DFA//UKFFS/0333/2023
UK//COOP
Metadata
Zobrazit celý záznamKolekce
Tato publikace má vydavatelskou verzi s DOI 10.3390/ma18153653
Abstrakt
The conventional manufacturing of refractory complex concentrated alloys (RCCAs) for high-temperature applications is complicated, particularly when material costs and high melting points of the materials processed are considered. Additive manufacturing (AM) could provide an effective alternative. However, the extreme temperatures involved represent significant challenges for manufacturing defect-free alloys using this approach. To address this issue, we investigated the preparation of a CrNbTiZr quaternary complex concentrated alloy from an equimolar blend of elemental powders using commercially available powder-blown L-DED technology. Initially, the alloys exhibited some defects owing to the internal stress caused by the temperature gradients. This was subsequently resolved by optimizing the deposition strategy. SEM, XRD and EDS were used to analyze the alloy in the as-deposited condition, revealing a BCC phase and a secondary Laves phase. Furthermore, Vickers hardness testing demonstrated a correlation between the hardness and the volume fraction of the Laves phase. Finally, successfully performed compression tests confirmed that the prepared material exhibits high-temperature strength and therefore is promising for high-temperature application under extreme conditions.
Klíčová slova
refractory metals, refractory complex concentrated alloys, high-entropy alloys, additive manufacturing, directed energy deposition,
Trvalý odkaz
https://hdl.handle.net/20.500.14178/3519Licence
Licence pro užití plného textu výsledku: Creative Commons Uveďte původ 4.0 International
