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INFLUENCE OF MULTILAYER STRUCTURE ON THE STRUCTURAL AND MECHANICAL PROPERTIES OF TiAlN/CrN COATINGS FOR ADVANCED MACHINING APPLICATIONSoa mark
  • Akkili, Viswanath G. ;
  • Lee, Hansung ;
  • Kim, Suhyeon ;
  • Choi, Jun Hui ;
  • Chung, Choong Heui ;
  • Park, Joon Sik ;
  • Lee, Jae Hyun ;
  • Ahn, Byungmin ;
  • Kim, Yoon Kee ;
  • Lee, Sangyeob
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Publication Year
2024-01-01
Publisher
Polska Akademia Nauk
Citation
Archives of Metallurgy and Materials, Vol.69, pp.479-484
Keyword
Interface control phenomenaMetal nitridesMultilayer coatingsNanoindentationRF magnetron sputtering
Mesh Keyword
CrN coatingInterface controlInterface control phenomenonMetal nitridesMulti-layer-coatingMultilayer structuresNano indentationNanocomposite thin filmsR.F. magnetron sputteringStructural and mechanical properties
All Science Classification Codes (ASJC)
Metals and Alloys
Abstract
This study investigates single and multilayer TiAlN/CrN nanocomposite thin films developed using an RF magnetron sputtering system. The TiAlN and CrN layers showed a high degree of orientation, with the (200) peak being the strongest peak in both layers, and a multilayer structure was clearly observed. The surface roughness analysis using atomic force microscopy (AFM) and cross-sectional transmission electron microscopy (TEM) revealed that the TiAlN/CrN coatings had a smoother surface than the single-layer coatings and minimal intermixing between the two layers. Depth-sensing indentation measurements were used to measure the hardness and Young’s modulus of the coatings, demonstrating that TiAlN/CrN coating had the highest hardness (—16.38 GPa) and elastic modulus (~3.82 GPa) among all the coatings studied. This indicates that the TiAlN/CrN multilayer coating possesses superior mechanical properties due to its interface strength. Our findings suggest that these multilayer coatings have potential applications in tribological and decorative coatings.
ISSN
1733-3490
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/34309
DOI
https://doi.org/10.24425/amm.2024.149771
Fulltext
https://journals.pan.pl/Content/131851/AMM-2024-2-19-Sangyeob%20Lee.pdf?handler=pdf
Type
Article
Funding
This research was supported by the research fund of Hanbat National University in 2020.
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Ahn, Byungmin 안병민
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