Application of Nano-layers for the improvement of cavitation resistance – Feben Tereffe Huluka
Feben Tereffe Huluka
Master's thesis
Application of Nano-layers for the improvement of cavitation resistance
Application of nano-layers for the improvement of the cavitation resistance
Abstract:
Research on Nano layer coating application for the improvement of the resistance to cavitation erosion has been discussed. The coating was accomplished by Arc PVD method where the substrate was an aluminum alloy namely duralumin. A vibratory cavitation device at a constant amplitude was used to conduct the cavitation test on the coated and reference samples. The surface characterization during the …moreAbstract:
Research on Nano layer coating application for the improvement of the resistance to cavitation erosion has been discussed. The coating was accomplished by Arc PVD method where the substrate was an aluminum alloy namely duralumin. A vibratory cavitation device at a constant amplitude was used to conduct the cavitation test on the coated and reference samples. The surface characterization during the …more
Language used: English
Date on which the thesis was submitted / produced: 12. 6. 2020
Thesis defence
- Supervisor: Ing. Miloš Müller, Ph.D.
Citation record
ISO 690-compliant citation record:
HULUKA, Feben Tereffe. \textit{Application of Nano-layers for the improvement of cavitation resistance}. Online. Master's thesis. Liberec: Technical University of Liberec, Faculty of Mechanical Engineering. 2020. Available from: https://theses.cz/id/gb367q/.
The right form of listing the thesis as a source quoted
Huluka, Feben Tereffe. Application of Nano-layers for the improvement of cavitation resistance. Liberec, 2020. diplomová práce (Ing.). Technická univerzita v Liberci. Fakulta strojní
Full text of thesis
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Institution archiving the thesis and making it accessible: Technická univerzita v Liberci, Fakulta strojníTechnical University of Liberec
Faculty of Mechanical EngineeringMaster programme / field:
Mechanical Engineering / Machines and Equipment Design
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