Improvement of friction units of power plants by aplying ceramic composite spray coatings
- Authors: Siluyanova M.V.1, Fertikov A.O.1
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Affiliations:
- Moscow Aviation Institute (National Research University)
- Issue: Vol 17, No 2 (2018)
- Pages: 122-131
- Section: AIRCRAFT AND SPACE ROCKET ENGINEERING
- URL: https://journals.ssau.ru/vestnik/article/view/6225
- DOI: https://doi.org/10.18287/2541-7533-2018-17-2-122-131
- ID: 6225
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Abstract
Modifying the working surface of a product by applying protective and functional coatings makes possible considerable changes in the mechanical, optical, electrical, magnetic, thermal and chemical properties of the original structural material, its real surface, producing articles with protective, for example, anti-corrosion, wear-resistant and other properties. We investigated the possibility of improving the friction units of aircraft power plants by applying nanostructured ceramic composite spray coatings. A heavily loaded bearing forming a part of the gearbox of a turbojet engine is used as a prototype of the friction unit. The advantages and drawbacks of improved friction units as compared to production models and their prototypes made according to an improved technology are assessed. The results obtained during the experimental work are presented. A positive conclusion is made about the use of nanostructured composite materials in the development of friction units; the most favorable method of coating is determined.
About the authors
M. V. Siluyanova
Moscow Aviation Institute (National Research University)
Author for correspondence.
Email: dc2mati@yandex.ru
Doctor of Science (Engineering), Professor
Russian FederationA. O. Fertikov
Moscow Aviation Institute (National Research University)
Email: alexfertikov@gmail.com
Master’s Degree Student
Russian FederationReferences
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- Siluyanova M.V., Fertikov A.O. Improvement of friction units of power plants by applying spray coatings made of ceramic composites. Absracts 16th International Conference «Aviation and Cosmonautics – 2017». Moscow: Luxor Publ., 2017. P. 489-490 (In Russ.).