Tribological Characterization of the Nanostructured Thin Films Deposited by Intelligent Methods, for Mechatronic and Biomedical Applications

Author:

Gornoava Valentin1,Gheorghe Gheorghe Ion12,Badita Liliana-Laura1

Affiliation:

1. National Institute of Research and Development in Mechatronics and Measurement Technique, Bucharest

2. Valahia University of Târgoviste, Faculty of Materials Engineering and Mechanics

Abstract

Abstract The main objectives of the present project are to study and to improve mechanical properties of different systems from mechatronic and biomedical domains, in order to increase their functionality and life span. This is why nanostructured thin films (e.g. Al, Cr, Ti, Ti/Al multilayers) were deposited on different steel substrates, used in mechatronic and biomedical applications. By the characterization of coated surfaces of the products used in various fields such as medicine, mechatronics, electronics, etc. depends their proper operation, durability and reliability. This is the main reason why, we studied new types of layers and multilayers using Atomic Force Microscopy and scratch tests. The main result of the realized tests is that all studied nanostructured thin films offer the possibility of increasing the lifetime of substrates, being an important factor for proper functional operation, durability and reliability of the final systems in which they are used.

Publisher

Walter de Gruyter GmbH

Reference13 articles.

1. [1] A. O. Mateescu, G. Mateescu, “Multilayer inorganic/organic tribological coatings for space applications-SpaceCoat”, Contract with Romanian Space Agency, 2013-2014

2. [2] S. L. Rohde, W. D. Munz, “Sputter deposition in Advanced Surface Coating”: A Handbook of Surface Engineering, Glasgow and London, 1991, 96-126.

3. [3] W. D. Sproul, “Physical vapour deposition tool coatings”. Surface and Coatings Technology. 1996; 81, 1-7.

4. [4] I. Stamatin, “Nanomaterials. Applications in biosensors, renewable energy, medicine, biology”. University of Bucharest, 2008.

5. [5] Springer Handbook of Nanotechnology, Buschan Editor.

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Mechanical Characterization of Nanostructured Thin Films Used to Imporve Mechatronic Components;Scientific Bulletin of Valahia University - Materials and Mechanics;2017-04-25

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