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Prospects of low pressure Cold Spray
Języki publikacji
Abstrakty
Przedstawiono analizę literaturową natryskiwania niskociśnieniową metodą Cold Spray, w tym ideę samej metody, rodzaje stosowanych proszków, a także wpływ dodatku ceramiki Al2O3. Omówiono nanoszenie proszków metali na tworzywa sztuczne. Jest to nowa wykorzystania niskociśnieniowego natryskiwania Cold Spray, w której upatrywana jest szansa na szybką metalizację powierzchni tworzyw sztucznych z uniknięciem jej degradacji.
The paper presents literature view on Low Pressure Cold Spray, including the idea of the method, the types of powders, as well as the effect of added Al2O3 particles. It also discusses depositing metal powders onto plastic substrates. This is a new perspective on the use of Low Pressure Cold Spray, which was seen as a chance for rapid metallization of plastic surfaces, thus avoiding its degradation.
Czasopismo
Rocznik
Tom
Strony
2--6
Opis fizyczny
Bibliogr. 20 poz., il.
Twórcy
Bibliografia
- [1] Klinkov S. V, Kosarev V. R, Rein M.: Cold spray deposition: Significance of particle impact phenomena, Aerospace Science an Technology, 2005, vol. 9, s. 582-591.
- [2] Klassen T., Gärtner R, Schmidt T., Kliemann J.-O., Onizawa K., Donner K.-R., Gutzmann H., Binder K., Kreye H.: Basic principles and application potentials of cold gas spraying, Mat.-wiss. u.Werkstofftech, 2010, vol. 41, No. 7, s. 575-584.
- [3] Hussain T., McCartney D.G., Shipway P.H., Zhang D.: Bonding Mechanisms in Cold Spraying: The Contributions of MetaIlurgicaland Mechanical Components, Journal of Thermal Spray Technology, 2009, vol. 18, No. 3. s. 364-379,
- [4] Winnicki M., Kocimski J., A. Ambroziak A.: Porównanie wydajności procesu dwóch metod natryskiwania na zimno: nisko- i wysokociśnieniowej, XXXIX Szkoła Inżynierii Materiałowej, Kraków-Krynica, 27-30 1X 2011: [monografia/pod red, Jerzego Pacyny]. 2011 (Kraków: Zakład Usług Poligraficznych), s. 247-252.
- [5] Koivuluoto H., Lagerbom J., Kylmälahti M., Vuoristo P.: Microstructure and Mechanical Properties of Low-Pressure ColdSprayed (LPCS) Coatings, Journal of Thermal Spray Technology, 2008, vol. 17(5-6), s. 721-727.
- [6] Xian-Jin Ning, Jae-Hoon Jang, Hyung-Jun Kim: The effects of powder properties on in-flight particle velocity and deposition process during Iow pressure cold spray process, Applied Sur-face Science, 2007, vol. 253, s.7449-7455.
- [7] Koivuluoto H., Vuoristo P.: Effect of Powder Type and Composition on Structure and Mechanical Properties of Cu +AI2O3 Coatings Prepared by using Low-Pressure Cold Spray Process, Journal of Thermal Spray Technology, 2010, vol. 19 (5), s. 1081-1092.
- [8] Kairet T., Degrez M., Campana R, Janssen J.-P: Influence of the Powder Size Distributionon the Microstructure of Cold-Sprayed Copper Coatings Studied by X-ray Diffraction, Journal of Thermal Spray Technology, 2007, vol. 16 (5-6), s. 610-618.
- [9] Sova A., Kosarev V.F., Papyrin A., and Smurov I.: Effect of Ceramic Particle Velocity on ColdSpray Deposition of Metal-Ceramic Coatings, Journal of Thermal Spray Technology, 2011, vol. 20(1-2), 285-291.
- [10] Azarmia F., Coyleb T. Mostaghimib J.: Young's modulus measurement and study of the relationship between mechanical properties and microstructure of air plasma sprayed alloy 625, Surface and Coatings Technology, vol. 203, issue. 8,15 January 2009, s. 1045-1054.
- [11] Sevostianov I., Kachanov M:. Plasma-sprayed ceramic coatings: anisotropic elastic and conductive properties in relation to the microstructure; cross-property correlations, Materials Science and Engineering: A vol. 297, Issues 1-2, 15 January 2001, s. 235-243.
- [12] Sundararajan G., Chavan N. M., Sivakumar G., Phani P.S.: Evaluation of Parameters for Assessmen of Inter-Splat Bond Strength in Cold-Sprayed Coatings. Journal of Thermal Spray Technology, vol. 19 (6), December 2010, s. 1255-1266.
- [13] Champagne V., Helfritch D.: Eiectromagnetic Interference Shielding by the Cold Spray Particle Deposition of an Aluminum-Alumina Matrix, Journal of Advanced Materials, vol. 40(1), 2008.
- [14] Lupoi R., O'Neill W.: Deposition of metallic coatings on polymer surfaces using cold spray, Surface & Coatings Technology, vol. 205 (2010), s. 2167-2173,
- [15] Barletta M., Gisario A., Tagliaferri V.: Electrostatic spray deposition (ESD) of polymeric powders on thermoplastic (PA66) substrate, Surface & Coatings Technology, vol. 201 (2006), s. 296-308.
- [16] Zhou X.L, Chen A.R, Liu J.C., Wu X.K., Zhang J.S.: Preparation of metallic coatings on polymer matrix composites by cold spray, Surface & Coatings Technology, vol. 206 (2011), s. 132-136.
- [17] Grujicic M., Pandurangan B., Bell W.C., Daqaq M., Ma L., Seyr N., Erdmann M., Holzleitner J.: A computational analysts and suitability assessment of cold-gas dynamic spraying of glass-fiber-reinforced poly-amide 6 for use indirect-adhesion polymer metal hybrid components, Applied Surface Science, vol. 254 (2008), s. 2136-2145.
- [18] AlhuIaifi A.S., Buck G.A., Arbegast W.J.: Numerical and Experimental lnvestigation of Cold Spray Gas Dynamic Effects for Polymer Coating, Journal of Thermal Spray Technology. 2012.
- [19] Xu Y., Hutchings l.M.: Cold spray deposition of thermoplastic powder, Surface & Coatings Technology, vol. 201 (2006), s. 3044-3050.
- [20] Grujicic M., Sellappana V., Mearsa L., Xuana X.,Seyrb N., Erdmannc M., Holzleitnerc J.: Selection of the spraying technologies for over-coating of metal-stampings with thermo-plastics for use indirect-adhesion polymer metal hybrid load-bearing components, Journal of Materials Processing Technology, vol. 198 (2008), s. 300-312.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BTB5-0013-0024