<div class="csl-bib-body">
<div class="csl-entry">Hu, C., Zhang, J., Chen, L., Xu, Y. X., Kong, Y., Du, J. W., & Mayrhofer, P. H. (2022). Self-layering of (Ti,Al)N by interface-directed spinodal decomposition of (Ti,Al)N/TiN multilayers: First-principles and experimental investigations. <i>Materials & Design</i>, <i>224</i>, Article 111392. https://doi.org/10.1016/j.matdes.2022.111392</div>
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dc.identifier.issn
0264-1275
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/144316
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dc.description.abstract
Supersaturated (Ti,Al)N materials with face centered cubic (fcc) structure offer unique combinations of thermal stability and mechanical properties. However, their thermally-induced decomposition processes are crucial for extracting their full potential. Detailed experimental studies by X-ray diffraction and transmission electron microscopy reveal that the formation of the thermodynamically stable wurtzite-type w-AlN starts with 1000 °C at 100 °C lower annealing temperatures (Ta) when applying a multilayer-concept with TiN to form (Ti,Al)N/TiN multilayers. Nevertheless, the hardness of (Ti,Al)N/TiN multilayers peaks with 32.3 ± 1.0 GPa at a 100 °C higher Ta (900 °C) than the (Ti,Al)N coating, and the hardness declining trend with increasing Ta is milder. This is because the (Ti,Al)N decomposes towards a layered structure of Al-rich and Ti-rich regions, when coherently grown with fcc-TiN. Ab initio calculations highlight that Al within the (Ti,Al)N layers preferentially diffuses away from the coherent interface with the TiN layers. Thus, out of one (Ti,Al)N layer more layers form, and even upon the phase-transformation of the Al-rich layers to w-AlN, their layered structure remains. Together, the computational and experimental results suggest that the layered arrangement provides a higher resistance against dislocation glide and is beneficial for the coating integrity.
en
dc.language.iso
en
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dc.publisher
Elsevier
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dc.relation.ispartof
Materials & Design
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dc.rights.uri
http://creativecommons.org/licenses/by-nc-nd/4.0/
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dc.subject
(Ti,Al)N/TiN multilayer
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dc.subject
Ab initio
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dc.subject
Interface
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dc.subject
Spinodal decomposition
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dc.title
Self-layering of (Ti,Al)N by interface-directed spinodal decomposition of (Ti,Al)N/TiN multilayers: First-principles and experimental investigations
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dc.type
Article
en
dc.type
Artikel
de
dc.rights.license
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International
en
dc.rights.license
Creative Commons Namensnennung - Nicht kommerziell - Keine Bearbeitungen 4.0 International