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Abstrakty
The paper described properties of electro-spark deposited coatings under influence of the laser treatment process. The properties were assessed by analyzing the coating microstructure, X-ray radiation, microhardness, bonding strength, corrosion resistance, porosity and wear tests. The tests were conducted for Mo and Cu coatings (the anode) which were electro-spark deposited over the C45 steel substrate (the cathode) and melted with a laser beam. The coatings were deposited by means of an ELFA-541. The laser processing was performed with an Nd:YAG laser. The coatings after laser processing are still distinguished by very good performance properties, which make them suitable for use in sliding friction pairs.
Wydawca
Czasopismo
Rocznik
Tom
Strony
809--816
Opis fizyczny
Bibliogr. 37 poz., fot., rys., tab., wykr.
Twórcy
autor
- Kielce University of Technology, Centre for Laser Technologies of Metals, Al. 1000-lecia Państwa Polskiego 7, 25-314 Kielce, Poland
autor
- Silesian University of Technology, Faculty of Materials Science and Metallurgy, Institute of Materials Science, 8 Krasińskiego Str., 40-019 Katowice, Poland
autor
- Cracow University of Technology, Faculty of Mechanical Engineering, Al. Jana Pawła II 37, 31-864 Cracow, Poland
autor
- Cracow University of Technology, Department of Software Engineering and Applied Statistics, Al. Jana Pawła II 37, 31-864 Cracow, Poland
autor
- University of Zilina, Univerzitna 1, 01-026 Zilina, Slovakia
autor
- Cracow University of Technology, Department of Software Engineering and Applied Statistics, Al. Jana Pawła II 37, 31-864 Cracow, Poland
Bibliografia
- [1] A. Agarwal, N.B. Dahotre, Surf. Coat. Tech. 106, 242-250 (1998).
- [2] B. Antoszewski, E. Evin, J. Audy, J. Tribol.-Trans. ASME 3, 253-262 (2008).
- [3] A. V. Ribalko, O. Sahin, Surf. Coat. Tech. 168, 129-135 (2003).
- [4] C. B. Tang, D. X. Liu, Z. Wang, Y. Gao, Appl. Surf. Sci. 257, 6364-6371 (2011).
- [5] W. Kwaśny, T. Jung, Technical Trans. 2-M, 119-124 (2015).
- [6] J. Lubas, Technical Trans. 7-M, 295-301 (2008).
- [7] R. Ulewicz, J. Balk. Tribol. Assoc. 21, 166-172 (2015).
- [8] R. Ulewicz, F. Novy, J. Selejdak, Adv. Mater. Res.-Switz. 874,43-48 (2014).
- [9] A. Gadek-Moszczak, N. Radek, S. Wronski, J. Tarasiuk, Adv. Mater. Res.-Switz. 874, 133-138 (2014).
- [10] J. Pietraszek, N. Radek, K. Bartkowiak, Solid State Phenom. 197, 198-202 (2013).
- [11] N. Radek, J. Konstanty, Arch. Metall. Mater. 57, 665-670 (2012).
- [12] N. Radek, E. Wajs, M. Luchka, Powder Metall. Met. C+ 47, 197-201 (2008).
- [13] M. Scendo, J. Trela, N. Radek, Surf. Coat. Tech. 259, 401-407 (2014).
- [14] B. Antoszewski, Adv. Mater. Res.-Switz. 874, 51-55 (2014).
- [15] G. Ryk, I. Etsion, Wear 261, 792-796 (2006).
- [16] W. Yi, X. Dang-Sheng, J. Mater. Process. Tech. 197, 96-100 (2008).
- [17] N. Radek, J. Pietraszek, B. Antoszewski, Adv. Mater. Res.-Switz. 874, 29-34 (2014).
- [18] O. Kempthorne, K. Hinkelmann, Design and analysis of experiments. Vol. 1. Introduction to experimental design, John Wiley & Sons, Hoboken, NJ, USA (2007).
- [19] T. P. Ryan, Modern Experimental Design, John Wiley & Sons, Hoboken (2007).
- [20] J. Pietraszek, A. Gadek-Moszczak, T. Torunski, Adv. Mater. Res.-Switz. 874, 139-143 (2014).
- [21] Y. Pawitan, In All Likelihood: Statistical Modelling and Inference Using Likelihood, Clarendon Press, Oxford (2001).
- [22] D. C. Montgomery, Design and Analysis of Experiments, John Wiley & Sons, Inc., Hoboken (2008).
- [23] A. B. Owen, Empirical Likelihood, Chapman & Hall/CRC, Boca Raton (2001).
- [24] E. Skrzypczak-Pietraszek, I. Kwiecien, A. Goldyn, J. Pietraszek, Phytochem. Lett. 20, 443-448 (2017).
- [25] R. Dwornicka, Adv. Mater. Res.-Switz. 874, 63-69 (2014).
- [26] U. Ferdek, M. S. Kozien, Acta Phys. Pol. A 123, 1044-1047 (2013).
- [27] L. Skrzypczak, E. Skrzypczak-Pietraszek, E. Lamer-Zarawska, B. Hojden, Acta Soc. Bot. Pol. 63, 173-177 (1994).
- [28] A. Szczotok, M. Sozanska, Prakt. Metallogr.-Pr. M. 46, 454-468 (2009).
- [29] F. Deflorian, L. Ciaghi, J. Kazior, Werkst. Korros.-Mater. Corros. 43, 447-452 (1992).
- [30] M. Hebda, S. Gadek, J. Kazior, J. Therm. Anal. Calorim. 108, 453-460 (2012).
- [31] A. Tiziani, A. Molinari, J. Kazior, G. Straffelini, Powder Metall. Int. 22, 17-19 (1990).
- [32] T. Wejrzanowski, S. Haj Ibrahim, J. Skibinski, K. Cwieka, K.J. Kurzydlowski, Image Anal. Stereol. 36, 105-110 (2017).
- [33] A. Gadek-Moszczak, J. Pietraszek, B. Jasiewicz, S. Sikorska, L. Wojnar, Stud. Comput. Intell. 572, 127-136 (2015).
- [34] J. Korzekwa, A. Gadek-Moszczak, M. Bara, Prakt. Metallogr.-Pr. M. 53, 36-49 (2016).
- [35] A. V. Goroshko, V. P. Royzman, A. Bubulis, K. Juzenas, J. Vibroeng. 16, 2178-2187 (2014).
- [36] A. Szczotok, Materialwiss. Werkst. 46, 320-329 (2015).
- [37] A. Goroshko, V. Royzman, V. Ostasevicius, Mechanika 22, 206-211 (2016).
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-04998b78-f7ba-44e0-9c84-ec450e95256d