<div class="csl-bib-body">
<div class="csl-entry">Kretschmer, A., Kirnbauer, A., Frost, R. J. W., Primetzhofer, D., Hans, M., Schneider, J. M., Schuster, R., & Mayrhofer, P. H. (2025). Unprecedented B solubility in cubic (Hf,Ta,Ti,V,Zr)B-C-N coatings. <i>Acta Materialia</i>, <i>299</i>, Article 121413. https://doi.org/10.1016/j.actamat.2025.121413</div>
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dc.identifier.issn
1359-6454
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/225461
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dc.description.abstract
The impact of compositional complexity in Ti-B-C-N based coatings was investigated by depositing Ti-rich (Hf,Ta,Ti,V,Zr)B-C-N with varying B/C ratios (from 0/21 to 32/0 at%). Despite a high B content of up to 32 at%, all coatings exhibit a fine-grained columnar single-phase face-centered-cubic (fcc) solid solution without any boride phase. All coatings show similar hardness values of 37−38GPa, but increasing the B content reduces the indentation modulus. Ab initio calculations support this trend in elasticity and confirm the stability of these solid solutions. Despite increasing the compositional complexity, the addition of B and C has little influence on the lattice distortion. Among the coatings, [Figure presented] offers the best combination of high hardness (37.7±1.0GPa) and fracture toughness (Kᵢ꜀=4.0±0.5 MPa*m⁽¹/²⁾). This compositionally complex, single-phase fcc-structured coating retains its hardness – even slightly increasing to 38.3±1.3GPa – upon vacuum annealing to 1200 °C. X-ray diffraction and atom probe tomography confirm its high-temperature phase stability, with phase transformation occurring only above 1200 °C. These results demonstrate the advantages of compositionally complex coatings, which outperform simpler Ti-B-N or Ti-C-N coatings with similar structure, and that the solubility limits can be extended beyond known boundaries by advanced materials science.
en
dc.description.sponsorship
FFG - Österr. Forschungsförderungs- gesellschaft mbH
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dc.description.sponsorship
FFG - Österr. Forschungsförderungs- gesellschaft mbH
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dc.description.sponsorship
FFG - Österr. Forschungsförderungs- gesellschaft mbH
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dc.description.sponsorship
FFG - Österr. Forschungsförderungs- gesellschaft mbH
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dc.language.iso
en
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dc.publisher
PERGAMON-ELSEVIER SCIENCE LTD
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dc.relation.ispartof
Acta Materialia
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dc.rights.uri
http://creativecommons.org/licenses/by/4.0/
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dc.subject
Ceramics
en
dc.subject
Compositional complexity
en
dc.subject
Mechanical properties
en
dc.subject
Phase stability
en
dc.subject
PVD
en
dc.title
Unprecedented B solubility in cubic (Hf,Ta,Ti,V,Zr)B-C-N coatings
201440201-FV02 - P4.4: WP02: Tribological phenomena influenced by additive manufacturing (Tribo3DPrinting) SWP01: 3D printed jurnal bearing with heatpipes
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tuw.project.title
2201220502-FV02 - P2.2: WP05: Tribological behaviour of High Entropy Nitride Coatings "HENiCoat" SWP02: DFT and Data Science guided multielement-alloy discovery
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tuw.project.title
242490201-FV01: Safe and sustainable materials and chemicals for tribosystems WP02: Replacement of critical raw materiasl in material design -SWP01: Development of materials solutions with reduced product carbon footprints and enhanced performance
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tuw.project.title
242480501-FV01: Lab-to-field environment for Co2 neutral energy systems; WP05: H2 resistant materials and barrier coatings; SWP01: Tribological and mechano-chemical characterization of advanced coatings in exteme environments
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tuw.researchinfrastructure
Röntgenzentrum
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tuw.researchinfrastructure
Universitäre Service-Einrichtung für Transmissionselektronenmikroskopie