Anisotropy of the Tribological Performance of Periodically Oxidated Laser-Induced Periodic Surface Structures

Author:

Onufrijevs Pavels1ORCID,Grase Liga2ORCID,Padgurskas Juozas3ORCID,Rukanskis Mindaugas3,Durena Ramona1ORCID,Willer Dieter4,Iesalnieks Mairis2ORCID,Lungevics Janis5ORCID,Kaupuzs Jevgenijs1,Rukuiža Raimundas3ORCID,Kriūkienė Rita6ORCID,Hanesch Yuliya4,Speicher Magdalena4

Affiliation:

1. Institute of Technical Physics, Faculty of Materials Science and Applied Chemistry, Riga Technical University, P. Valdena 7, LV-1048 Riga, Latvia

2. Institute of Materials and Surface Engineering, Faculty of Materials Science and Applied Chemistry, Riga Technical University, P. Valdena 7, LV-1048 Riga, Latvia

3. Department of Mechanical, Energy and Biotechnology Engineering, Faculty of Engineering, Vytautas Magnus University, 11 Studentų Str., LT-53362 Kaunas, Lithuania

4. Materials Testing Institute, University of Stuttgart, Pfaffenwaldring 32, 70569 Stuttgart, Germany

5. Department of Mechanical Engineering and Mechatronics, Riga Technical University, Kipsalas 6b, LV-1048 Riga, Latvia

6. Lithuanian Energy Institute, Breslaujos 3, LT-44403 Kaunas, Lithuania

Abstract

Laser-induced periodic surface structures (LIPSS) enable advanced surface functionalization with broad applications in various fields such as micro- and nanoelectronics, medicine, microbiology, tribology, anti-icing systems, and more. This study demonstrates the possibility of achieving anisotropy in the tribological behavior of C45-grade steel structured by nanosecond laser radiation using the LIPSS method. The lateral surface of the steel roller was irradiated with a pulsed Nd:YAG laser at an optimum intensity I = 870 MW/cm2 for the formation of LIPSS. Two sets of samples were formed with LIPSS that were perpendicular and parallel to the roller’s rotational motion direction. The Raman intensity maps revealed that the LIPSS structure consisted of periodically arranged oxides at the top of hills. At the same time, the valleys of the LIPSS structures were almost not oxidized. These results correlated well with scanning electron microscopy energy dispersive X-ray spectroscopy mapping and atomic force microscopy measurements. A comparison of Raman and X-ray photoelectron spectroscopy spectra revealed that both the magnetite phase and traces of the hematite phase were present on the surface of the samples. Tribological tests were performed in two cycles with periodic changes in the normal clamping force and sliding speed. It was found that the LIPSS structures which were formed perpendicularly to the sliding direction on the roller had a significantly greater impact on the friction processes. Structures oriented perpendicular to the direction of motion had a positive influence on reducing the energy consumption of a friction process as well as increasing the wear resistance compared to LIPSS formed parallel to the direction of motion or ones having a non-texturized surface. Laser texturing to produce LIPSS perpendicular to the direction of motion could be recommended for friction pairs operating under low-load conditions.

Funder

European Regional Development Fund

Bal-tic-German University Liaison Office, the German Academic Exchange Service

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

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