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Innovation in the process of thermal spraying coatings

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Języki publikacji
EN
Abstrakty
EN
In this paper, the hybrid method connects the ultrasonic spraying method with a injector of complex cooling micro-jet system is presented. The use of properly constructed injector allows for local and selective cooling of the coating structure immediately after spraying process. The construction of injector is the subject of patent in Polen. The presented new technology gives practical possibility of control of coatings structure. This is the kind of positive feedback between the technology process and obtained product (the quality of the process increases the quality of the final product). The initial experimental investigations, presented in this paper, show, that the obtained coatings structure is: fine-dispersion of the grain, with a lower porosity, good compactness and adhesion to the substrate.
Twórcy
  • University of Occupational Safety Management, 8 Bankowas str., 40-007 Katowice, Poland
Bibliografia
  • [1] B. Wielage. H. Pokhmurska. M. Student, V. Gvozdeckii, T. Stupnyckyj, V. Pokhinurskii, Surf. Coat. Tech. 220, 27-35 (2013).
  • [2] M. Oksa, E. Turunen , T. Suhonen, T. Varis. S. P. Hannula, Coats, 1, 17-52(2011).
  • [3] Y. Song, L. Z. Lv, Y. Liu, X. Zhuan, T. J. Wang, Appl. Surf. Sci., 324,1,627-633(2015).
  • [4] L. A. Gorlach, R&D. J. S. Afr.Inst. Mech. Eng., 24 (3), (2008).
  • [5] R Fauchais, A. Vardelle, Thermal Sprayed Coatings Used Against Corrosion and Corrosive Wear, Advanced Plasma Spray Applications, in: H. Jazi (Ed.), InTech, 2012.
  • [6] http://w\srw.intechopen.com/books/advanced-plasma-spray-apphcations mermal-sprayed-coatings-usedagainst-corrosion- and-corrosive-wear
  • [7] K. Szymański. A. Hernas, G. Moskal, H. Myalska. Surf. Coat. Tech. (2014) DOI:10.1016/j.surfcoat.2014.10.046 (in press).
  • [8] L. Chang-Jiiu, Y. Guan-Jun, Int. J. Refract. Met. Hard. Mater. 39. 2-7 (2013).
  • [9] H. Myalska, G. Moskal, K. Szymański, Surf. Coat. Tech. 260, 303-309 (2014).
  • [10] A. Hernas (Ed.), The processes of destruction and protective coatings used in power industry, 2015 Racibórz, Polska.
  • [11] B. Szczucka-Lasota, W. Majewski, AMR, 1036, 152-157(2014).
  • [12] B. Szczucka-Lasota, K. Szymański, Solid State Phenom, 226,193-198 (2015).
  • [13] R. Ghosh, Spraytime,14 (4), 2-4(2007).
  • [14] Z. Zurecki, R Ghosh, T. Mebrahtu, M. J. Thayer, S. R Stringer, in: E. Lugscheider (Ed.), Air Products & Chemicals, 2008 Maastricht, Netherlands.
  • [15] L. Thakur, N. Arora, R Jayaganthan, R Sood. Appl. Surf. Sei. 258, 1225-1234, (2011).
  • [16] T. Węgrzyn, J. Piwnik, J. Wieszała, D. Hadryś, Arch. Metall. Mater, 57, 3679-685 (2012).
  • [17] W. Tarasiuk, B. Szczucka-Lasota, J. Piwnik, W. Majewski, AMR 1036, 452-457(2014).
  • [18] T. Węgrzyn, T. Piwnik, J. Wieszała, D. Hadryś , Arch. Metall. Mater, 57, 3, (2012) 679-685.
  • [19] T. Węgrzyn, J. Piwnik, J. Łazarz, D. Hadryś, Arch. Metall. Mater, 58 (2) 551-553 (2013).
  • [20] T. Węgrzyn, J. Piwnik, D. Hadryś, Arch. Metall. Mater, 58 (4),1067-1070 (2013).
  • [21] A. P. Wang, Z. M. Wang, J. Zhang, J. Q. Wang, J. Alloys Compd. 440, 225-228 (2007).
Uwagi
EN
Part of the work was performed as part of a project funded by the National Centre for Research and Development in the framework of the Strategic Research Programme, the agreement SP / El / 67484/10: Advanced technologies for energy: Developing technologies for highly efficient "zero-emission" coal-fired units with integrated CO: capture from exhaust. Task No. 17. IV Material research.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3e410542-f7bf-4ebb-a0b1-20cdf6de17cc
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