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Investigation of surface after erosion using optical profilometry technique

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper reports experimental results of the analysis of the 145Cr6 steel surface after erosion using the profilometrical technique by means of interferometry streaks. Erosive tests were carried out using abrasive containing quartz sand used in water jet cutting. Differences in the intensity of erosive wear were dependent on the angle of the abrasive stream (10°; 15°; 20°; 30°; 60°; 90°). In order to determine the characteristic features of the surface layer after the impact of the erosive stream, its characteristic parameters, such as roughness Ra and Sa for linear and field measurements, were analysed. Geometrical features of the regions investigated, such as shape, depth, angle of the abrasive stream, are presented. The analysis was carried out in two-dimensional (2D) and three-dimensional (3D) coordinate systems.
Słowa kluczowe
Rocznik
Strony
265--273
Opis fizyczny
Bibliogr. 18 poz., rys., tab., wykr.
Twórcy
  • Bialystok University of Technology, Faculty of Mechanical Engineering, ul. Wiejska 45A, 15-345 Bialystok, Poland
  • Motor Transport Institute, Centre for Material Testing, ul. Jagiellonska 80, 03-301 Warsaw, Poland
  • Bialystok University of Technology, Faculty of Mechanical Engineering, ul. Wiejska 45A, 15-345 Bialystok, Poland
Bibliografia
  • [1] Werner, A., Poniatowska, M. (2009). Coordinate measurements of complex-shape surfaces. Proc. of XIX IMEKO World Congress Fundamental and Applied Metrology, Lisbon, Portugal, 1815-1820.
  • [2] Rudnicki, Z. (2010).Metody komputerowej analizy obrazów w badaniach tribologicznych. Kraków: Wydawnictwo Akademii Górniczo-Hutniczej. (in Polish).
  • [3] Wieczorowski, M. (2009). Wykorzystanie analizy topograficznej w pomiarach nierówności powierzchni. Poznań: Wydawnictwo Politechniki Poznańskiej.
  • [4] Pawlus, P., Reizer, R., Wieczorowski, M. (2017). Problem of non-measured points in surface texture measurements. Metrology and Measurement Systems, 24(3), 525-536.
  • [5] Petzing, J., Couplnad, J., Leach, R. (2010). The measurement of rough surface topography using coherence scanning intereferometry. Measurement Good Practice Guide No. 116, London: National Physical Laboratory.
  • [6] Szymczak, T., Brodecki, A., Eminger, A., Kowalewski, Z.L., Rudnik, D. (2016). Experimental assessment of ball joints operation using servo-hydraulic testing systems. Solid State Phenomena, 240, 232-237.
  • [7] Pawlus, P., Reizer, R., Wieczorowski, M. (2018). Comparison of results of surface texture measurement obtained with stylus methods and optical methods. Metrology and Measurement Systems, 25(3), 589-602.
  • [8] Niemczewska-Wójcik M., Sładek, J., Tabaka M., Wójcik, A. (2014). Product quality assessment - measurement and analysis of surface topography. Metrology and Measurement Systems, 21(2), 271-280.
  • [9] Lu, Z., McKellop, H.A. (2014). Accuracy of methods for calculating volumetric wear from coordinate measuring machine data of retrieved metal-on-metal hip joint implants. Proc. of the Institution of Mechanical Engineers, part H, 228(3), 237-49.
  • [10] Krupicz, B., Liszewski, M., Tarasiuk W. (2016). Mechanical properties of materials and their erosive wear. Tribologia, 5, 85-94.
  • [11] Kosarac, A., Sikuljak, L., Salipurevic, M., Mladenovic, C., Zeljkovic, M. (2019). Prediction of self-excited vibrations occurance during aluminium alloy AL 7075 milling. Proc. of the 18th International Symposium INFOTEH-JAHORINA, East Sarajevo, Bosnia and Herzegovina.
  • [12] Tarasiuk, W., Piwnik, J., Węgrzyn, T., Sietelski, D. (2016). Wear Resistance of Steel 20MnCr5 after Surfacing with Micro-jet Cooling. Archives of Foundry Engineering, 16(3), 121-124.
  • [13] Węgrzyn, T., Piwnik, J., Wszołek, Ł., Tarasiuk, W. (2015). Shaft wear after surfacing with micro-jet cooling. Archives of Metallurgy and Materials, 60(4), 2625-2630.
  • [14] Łukaszewicz, A. (2019). Nonlinear Numerical Model of Friction Heating during Rotary Friction Welding. Journal of Friction and Wear, 39(6), 476-482.
  • [15] Borawski, A. (2016). Suggested research method for testing selected tribological properties of friction components in vehicle braking systems. Acta Mechanica et Automatica, 10(3), 223-226.
  • [16] Babicz, S., Stawarz-Graczyk, B., Wierzba, P. (2018). Phase object observation system based on diffraction phase microscopy. Metrology and Measurement Systems, 25(1), 213-221.
  • [17] Hawryluk, M., Ziemba, J., Dworzak, Ł. (2017). Development of a method for tool wear analysis using 3D scanning. Metrology and Measurement Systems, 24(4), 739-757.
  • [18] PN-EN ISO 6507-1:2018-05. Metals-Vickers hardness measurement. Part 1. Test method.
Uwagi
EN
1. The authors would like to thank Mr Adam Klasik Ph.D. for his support in profilometric measurements. The research was conducted as a part of the S/WM/4/2017 projects financed by the Ministry of Science and Higher Education of Poland.
PL
2. Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e84b0e99-e0ec-4ca4-87f6-c1be7d0905e5
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