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Własciwości i zastosowanie powłok natryskanych cieplnie

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Warianty tytułu
EN
Properties and applications of thermally sprayed coatings
Konferencja
Inżynieria Powierzchni, INPO 2008 ( VII; 02-05.12.2008; Wisła-Jawornik, Polska)
Języki publikacji
PL
Abstrakty
PL
W artykule przedstawiano najnowsze osiągnięcia w rozwoju natryskiwania cieplnego oraz wyniki badań mikrostruktury powłok natryskanych plazmowo, naddźwiękowo i zimnym gazem. Podano przykłady zastosowań powłok natryskanych cieplnie w różnych gałęziach przemysłu, zarówno na częściach nowych oraz w regeneracji.
EN
This paper presents state of art in development of thermal spraying and results of microstructure investigations of plasma, hypersonic and cold gas sprayed coatings. Examples of applications of thermally sprayed coatings, on new components as well in the case of reclamation, in different branches of industry are described.
Rocznik
Strony
619--623
Opis fizyczny
Bibliogr. 41 poz., rys.
Twórcy
  • Politechnika Świętokrzyska, Wydział Mechatroniki i Budowy, Maszyn, Katedra Inżynierii Eksploatacji, ktrwz@tu.kielce.pl
Bibliografia
  • [1] Pawlowski L.: The science and engineering of thermal spray coatings. John Wiley & Sons Ltd, Chichester, II ed. (2008).
  • [2] Zhang J., Kobayash, A.: Excitation temperature of smart spraying plasmas produced from modulated arc discharge. Vacuum 80 11-12 7 (2006) 1185-1189.
  • [3] Fukumasa O., Tagashira R., Tachino K., Mukunoki H.: Spraying of MgO films with a well-controlled plasma jet. Surface and Coatings Technology 169-170 2 (2003) 579-582.
  • [4] Xu Dong-Yan, Chen Xi; Effects of surrounding gas on the long laminar argon plasma jet characteristics, International Communications in Heat and Mass Transfer 32 7 (2005) 939-946.
  • [5] Morks M. F., Kobayashi A.: Effect of gun current on the microstructure and crystallinity of plasma sprayed hydroxyapatite coatings, Applied Surface Science 253 17 June 30 (2007) 7136-7142.
  • [6] Mariaux Gilles, Vardelle Armelle: 3-D time-dependent modelling of the plasma spray process. Part 1: flow modelling. International Journal of Thermal Sciences 44 4 April (2005) 357-366.
  • [7] Salhi Zahir, Klein Didier, Gougeon Patrick, Coddet Christian: Development of coating by thermal plasma spraying under very lowpressure condition <1mbar. Vacuum 77 2 January 17 (2005) 145-150.
  • [8] Ma W., Pan W. X., Wu C. K.: Preliminary investigations on low-pressure laminar plasma spray processing. Surface and Coatings Technology 191 2-3 February 21 (2005) 166-174.
  • [9] Borisov Y., Chernyshow A., Korzhick V., Murashov A.: Plasma spraying of coatings using a protective nozzle. Proc. of 2nd Plasma-Technik Symp., Lucerne (1991).
  • [10] Beauvais S., Guipont V., Borit F., Jeandin M., Español M., Khor K. A., Robisson A.: Process-microstructure-property relationships in controlled atmosphere plasma spraying of ceramics. Surface and Coatings Technology 183 2-3 May 24 (2004) 204-211.
  • [11] Sarafoglou Ch. I., Pantelis D. I., Beauvais S., Jeandin M.: Study of Al2O3 coatings on AISI 316 stainless steel obtained by controlled atmosphere plasma spraying (CAPS), Surface & Coatings Technology 202 1 November 15 (2007) 155-161.
  • [12] Miyoshi K.: Durability evaluation of selected solid lubricating films, Wear 251 (2001) 1061-1067.
  • [13] Li Chang-Jiu, Sun Bo: Microstructure and property of Al2O3 coating microplasma-sprayed using a novel hollow cathode torch. Materiale Letters 58 1-2 January (2004) 179-183.
  • [14] Barbezat G., Zierhut J., Landes K. D.: Triplex- a high perfomance plasma torch, Proc of United Thermal Spray Conference’99, Düsseldorf (1999).
  • [15] Nassenstein K., Peschka W.: Development of a new three cathodeplasma- gun. Proc. of International Thermal Spray Conference Essen (2002).
  • [16] Mauer G., Basen R., Stover D.: Preliminary study of the TriplexPro-200 gun for atmospheric plasma spraying of yttria stabilized zirconia. Proc of 3rd Recontres Projection Internationales Thermique Lille (2007).
  • [17] Barbezat G.: The internal plasma spraying on powerful technology for the aerospace and automotive industries. Proc. of 16th International Thermal Spray Conference, Singapore (2001).
  • [18] Barbezat G.: Application of thermal spraying in the automobile industry. Surface and CoatingsTechnology 201 (2006) 2028-2031.
  • [19] Ernst P., Barbezat G.: Thermal spray application in powertain contribute to the saving energy and material resources. Proc of 3rd Recontres Projection Internationales Thermique, Lille (2007).
  • [20] Planche M. P., Liao H., Normand B., Coddet C.: Relationships between NiCrBSi particle characteristics and corresponding coating properties using different thermal spraying processes, Surface and Coatings Technology 200 (2005) 2465-2473.
  • [21] Żórawski W., Chatys R., Radek N., Borowiecka-Janrozek J.: Plasma sprayed composite coatings with reduced friction coefficient. Surface & Coatings Technology 202 (2008) 4578-4582.
  • [22] Kreye H.: Characteristics of coatings produced by high velocity flame spraying, Proc. of the 12th International Thermal Spray Conference, London (1989).
  • [23] Kreye H.: High velocity flame spraying – process and coating characteristics, Proc of 2nd Plasma Technik Symposium, Lucerne (1991).
  • [24] Sudaprasert T., Shipway P. H., McCartney D. G.: Sliding wear behaviour of HVOF sprayed WC–Co coatings deposited with both gas-fuelled and liquid-fuelled systems. Wear 255 (2003) 943-949.
  • [25] Kong C. J., Brown P. D., Horlock A., Harris S. J., McCartney D. G.: TEM assessment of HVOLF thermally sprayed Al–12 wt.% Sn–1 wt.% Cu alloy. Materials Science and Engineering, A 375-377 (2004) 595-598.
  • [26] Kawase R.: Molecular and microstructure of thermal sprayed heat and corrosion-resistant plastic coatings. Proc. of the 15th International Thermal Spraying Conference, Nice (1998).
  • [27] Wang A. P., Wang Z. M., Zhang J., Wang J. Q.: Deposition of HVAFsprayed Ni-based amorphous metallic coatings. Journal of alloys and compounds 440 (2007) 225-228.
  • [28] Żórawski W.: HVOF spraying as an alternative to chromium plating International Conference „Modern Wear and Corrosion Resistant Coatings Obtained by Thermal Spraying” Warszawa (2003) 73-81.
  • [29] Duchamel J. P., Chen Y. M., Reby J., Nestler M.: APS and HVOF coatings alternative to hard chromium, a tribological approach, Proc. Of 15th ITSC, Nice (1998).
  • [30] Huchin J. P.: The place of thermal spraying in industry today and in the future. Proceedings of the ITSC Nice (1998) 925-931.
  • [31] Gärtner F., Stoltenhoff T., Schmidt T., Kreye H.: The cold spray process and its potential for industrial applications, Proceedings of the ITSC Basel (2005) 158-163.
  • [32] Żórawski W.: HVOF spraying as an alternative to chromium plating. International Conference „Modern Wear and Corrosion Resistant Coatings Obtained by Thermal Spraying” Warszawa (2003) 109-117.
  • [33] Van Steenkiste H., Smith J. R., Teets R. E., Moleski J. J.: Kinetic spray coatings. Surface and Coatings Technology 111 (1999) 62-71
  • [34] Stoltenhoff T., Voyer M., Kreye H.: Cold Spraying - State of the art and applicability, Proceedings of the ITSC Essen (2002) 366-374.
  • [35] Richer P., Krömmer W., Heinrich P.: Equipment engineering and process control for cold spraying, Proceedings of the ITSC Essen (2002) 375- 379.
  • [36] Cheng O.: Equipment engineering and process control for cold spraying. Proceedings of the ITSC Osaka (2004) 309-314.
  • [37] Barbezat G.: Application of thermal spraying in the automobile industry, Surface and CoatingsTechnology 201 (2006) 2028-2031.
  • [38] Wielage B., Wank A., Pokhmurska H., Grund T., Rupprecht C., Meisel G., Friesen E.: Development and trends in HVOF spraying technology, Surface and Coatings Technology 201 (2006) 2032-2037.
  • [39] Vetter J., Barbezat G., Crummenauer J., Avissar J.: Surface treatment selections for automotive applications. Surf. and Coatings Technology 200 (2005) 1962-1968.
  • [40] Rigney R. W., Grubowski A., McCaw R., Scandell K.: Component repair and chrom plating replacement with new thermal spray in the United States Navy: successes and the future, Proc. of 15th ITSC, Nice (1998).
  • [41] Parker D. S.: Case study: Application of HVOF sprayed coatings for replacement of chrome plating on navy P-3 aircraft hydraulic components and landing gear, Proc. of 15th ITSC, Nice (1998).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPL8-0008-0020
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