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Reviews

Cold spray coating: review of material systems and future perspectives

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Pages 369-395 | Received 31 Jul 2013, Accepted 05 Mar 2014, Published online: 16 Apr 2014

References

  • Alkhimov AP, Papyrin AN, Kosarev VF, Nesterovich NI and Shushpanov MM: ‘Gas-dynamic spraying method for applying a coating’, US Patent 5302414, 1994.
  • Kashirin AI, Klyuev OF and Buzdygar TV: ‘Apparatus for gas-dynamic coating’, US Patent 6402050, 2002.
  • Van Steenkiste TH, Smith JR, Gorkiewicz DW, Elmoursi AA, Gillispie BA and Patel NB: ‘Method of maintaining a non-obstructed interior opening in kinetic spray nozzles’, US Patent 6896933, 2005.
  • Champagne VK: ‘The cold spray materials deposition process: fundamentals and applications’, 2007, Cambridge, Woodhead Publishing Limited.
  • Papyrin A: ‘Cold spray technology’, Adv. Mater. Process., 2001, 159, 49–51.
  • Karthikeyan J: ‘Cold spray technology’, Adv. Mater. Process., 2005, 163, 33–35.
  • Xiong T.Y., et al. ‘Introduction to a new technology – cold gas dynamic spray’, Corros. Sci. Protect. Technol., 2001, 13, 267–269.
  • Papyrin A and Blose R: ‘Cold spray technology: from R&D to commercial applications’, Mater. Technol., 2003, 18, 73–78.
  • Zhu X, Yang M, Liu Q, Huang B and Tong H: ‘Cold spray techniques and its prospect of application in oil/gas facilities’, Tianranqi Gongye/Natural Gas Ind., 2004, 24, 12–80.
  • Vlcek J, Jonke DP and Englhart M: ‘Industrial application of cold spray coatings in the aircraft and space industry’, Einsatzmöglichkeiten kaltgasgespritzten Schichten Luft- Raumf., 2005, 96, 684–699+vii.
  • Gabel H: ‘Kinetic metallization compared with HVOF’, Adv. Mater. Process., 2004, 162, 47–48.
  • Jodoin B, Richer P, Bérubé G, Ajdelsztajn L and Yandouzi M: ‘Pulsed-gas dynamic spraying: process analysis, development and selected coating examples’, Surf. Coat. Technol., 2007, 201, 7544–7551.
  • Muehlberger E: ‘Method and apparatus for low pressure cold spraying’, US Patent 6759085, 2004.
  • Akedo J, Nakano S, Park J, Baba S and Ashida K: ‘The aerosol deposition method’, Synthesiol. Engl. Ed., 2008, 1, 121–130.
  • Irissou E, Legoux J.-G, Ryabinin AN, Jodoin B and Moreau C: ‘Review on cold spray process and technology: Part I - intellectual property’, J. Thermal Spray Technol., 2008, 17, 495–516.
  • Dykhuizen RC, Smith MF, Gilmore DL, Neiser RA, Jiang X and Sampath S: ‘Impact of high velocity cold spray particles’, J. Thermal Spray Technol., 1999, 8, 559–564.
  • Stoltenhoff T, Kreye H and Richter HJ: ‘An analysis of the cold spray process and its coatings’, J. Thermal Spray Technol., 2002, 11, 542–550.
  • Grujicic M, Saylor JR, Beasley DE, DeRosset WS and Helfritch D: ‘Computational analysis of the interfacial bonding between feed-powder particles and the substrate in the cold-gas dynamic-spray process’, Appl. Surf. Sci., 2003, 219, 211–227.
  • Assadi H, Gärtner F, Stoltenhoff T and Kreye H: ‘Bonding mechanism in cold gas spraying’, Acta Mater., 2003, 51, 4379–4394.
  • Grujicic M, Zhao CL, DeRosset WS and Helfritch D: ‘Adiabatic shear instability based mechanism for particles/substrate bonding in the cold-gas dynamic-spray process’, Mater. Des., 2004, 25, 681–688.
  • Wright T: ‘Shear band susceptibility: work hardening materials’, Int. J. Plast., 1992, 8, 583–602.
  • Schmidt T, Gärtner F, Assadi H and Kreye H: ‘Development of a generalized parameter window for cold spray deposition’, Acta Mater., 2006, 54, 729–742.
  • Ghelichi R, Bagherifard S, Guagliano M and Verani M: ‘Numerical simulation of cold spray coating’, Surf. Coat. Technol., 2011, 205, 5294–5301.
  • Li W.-Y, Li C.-J and Liao H: ‘Significant influence of particle surface oxidation on deposition efficiency, interface microstructure and adhesive strength of cold-sprayed copper coatings’, Appl. Surf. Sci., 2010, 256, 4953–4958.
  • Kang K, Yoon S, Ji Y and Lee C: ‘Oxidation dependency of critical velocity for aluminum feedstock deposition in kinetic spraying process’, Mater. Sci. Eng. A, 2008, A486, 300–307.
  • Li C.-J, Li W.-Y and Liao H: ‘Examination of the critical velocity for deposition of particles in cold spraying’, J. Thermal Spray Technol., 2006, 15, 212–222.
  • Li C.-J, Wang H.-T, Zhang Q, Yang G.-J, Li W.-Y and Liao HL: ‘Influence of spray materials and their surface oxidation on the critical velocity in cold spraying’, J. Thermal Spray Technol., 2010, 19, 95–101.
  • Moridi A, Hassani-Gangaraj SM and Guagliano M: ‘A hybrid approach to determine critical and erosion velocities in the cold spray process’, Appl. Surf. Sci., 2013, 273, 617–624.
  • Vlcek J, Gimeno L, Huber H and Lugscheider E: ‘A systematic approach to material eligibility for the cold-spray process’, J. Thermal Spray Technol., 2005, 14, 125–133.
  • Wang Q, Birbilis N and Zhang MX: ‘On the formation of a diffusion bond from cold-spray coatings’, Metall. Mater. Trans. A: Phys. Metall. Mater. Sci., 2012, 43, 1395–1399.
  • Lee MS, Choi HJ, Choi JW and Kim HJ: ‘Application of cold spray coating technique to an underground disposal copper canister and its corrosion properties’, Nucl. Eng. Technol., 2011, 43, 557–566.
  • King PC, Bae G, Zahiri SH, Jahedi M and Lee C: ‘An experimental and finite element study of cold spray copper impact onto two aluminum substrates’, J. Thermal Spray Technol., 2010, 19, 620–634.
  • Fukumoto M, Terada H, Mashiko M, Sato K, Yamada M and Yamaguchi E: ‘Deposition of copper fine particle by cold spray process’, Mater. Trans., 2009, 50, 1482–1488.
  • Karthikeyan J and Kay A: ‘Cold spray processing of copper and copper alloys’, Adv. Mater. Process., 2005, 163, 49.
  • Champagne VK Jr, Helfritch D, Leyman P, Grendahl S and Klotz B: ‘Interface material mixing formed by the deposition of copper on aluminum by means of the cold spray process’, J. Thermal Spray Technol., 2005, 14, 330–334.
  • Li W.-Y, Zhang G, Zhang C, Elkedim O, Liao H and Coddet C: ‘Improvement of microstructure and property of cold-sprayed Cu–4at.%Cr–2at.%Nb alloy by heat treatment’, Scr. Mater., 2006, 55, 327–330.
  • Koivuluoto H, Coleman A, Murray K, Kearns M and Vuoristo P: ‘High pressure cold sprayed (HPCS) and low pressure cold sprayed (LPCS) coatings prepared from OFHC Cu Feedstock: overview from powder characteristics to coating properties’, J. Thermal Spray Technol., 2012, 21, 1065–1075.
  • Koivuluoto H, Lagerbom J and Vuoristo P: ‘Microstructural studies of cold sprayed copper, nickel, and nickel-30% copper coatings’, J. Thermal Spray Technol., 2007, 16, 488–497.
  • Villafuerte J and Zheng W: ‘Corrosion protection of magnesium alloys by cold spray’, Adv. Mater. Process., 2007, 165, 53–54.
  • Fletcher MCSA: ‘Cold spray aluminium: a new generation of high temperature corrosion resistant coatings’, C.S.A. (hidegen szórt alumínium): Egy új generációs bevonat a magas homérsékletu területek korrózióvédelmére, 2008, 48, 50–55.
  • Spencer K and Zhang M.-X: ‘Heat treatment of cold spray coatings to form protective intermetallic layers’, Scr. Mater., 2009, 61, 44–47.
  • Ghelichi R, MacDonald D, Bagherifard S, Jahed H, Guagliano M and Jodoin B: ‘Microstructure and fatigue behavior of cold spray coated Al5052’, Acta Materialia, 2012, 60, 6555–6561.
  • DeForce BS, Eden TJ and Potter JK: ‘Cold spray Al-5% Mg coatings for the corrosion protection of magnesium alloys’, J. Thermal Spray Technol., 2011, 20, 1352–1358.
  • Moridi A, Hassani-Gangaraj SM, Guagliano M and Vezzu S: ‘Effect of cold spray deposition of similar material on fatigue behavior of Al 6082 alloy’, Conf. Proc. Soc. Exper. Mech. Ser., 2014, 7, 51–57.
  • Zhao ZB, Gillispie BA and Smith JR: ‘Coating deposition by the kinetic spray process’, Surf. Coat. Technol., 2006, 200, 4746–4754.
  • Sundararajan G, Chavan NM, Sivakumar G and Sudharshan Phani P: ‘Evaluation of parameters for assessment of inter-splat bond strength in cold-sprayed coatings’, J. Thermal Spray Technol., 2010, 19, 1255–1266.
  • Liu Y, Yuan X, Huang H, Wang Y, Lü N, Zhao H and Xiong T: ‘Rapidly solidified Zn-Al powder on surface of Mg alloy by cold spray method’, Special Cast. Nonferr. Alloys, 2006, 26, 204–207.
  • Price TS, Shipway PH and McCartney DG: ‘Effect of cold spray deposition of a titanium coating on fatigue behavior of a titanium alloy’, J. Thermal Spray Technol., 2006, 15, 507–512.
  • Marrocco T, McCartney DG, Shipway PH and Sturgeon AJ: ‘Production of titanium deposits by cold-gas dynamic spray: numerical modeling and experimental characterization’, J. Thermal Spray Technol., 2006, 15, 263–272.
  • Moy CKS, Cairney J, Ranzi G, Jahedi M and Ringer SP: ‘Investigating the microstructure and composition of cold gas-dynamic spray (CGDS) Ti powder deposited on Al 6063 substrate’, Surf. Coat. Technol., 2010, 204, 3739–3749.
  • Wong W, Rezaeian A, Irissou E, Legoux J.-G and Yue S: ‘Cold spray characteristics of commercially pure Ti and Ti-6Al-4V’, Adv. Mater. Res., 2010, 89–91, 639–644.
  • Cizek J, Kovarik O, Siegl J, Khor KA and Dlouhy I: ‘Influence of plasma and cold spray deposited Ti Layers on high-cycle fatigue properties of Ti6Al4V substrates’, Surf. Coat. Technol., 2013, 217, 23–33.
  • Cinca N, Barbosa M, Dosta S and Guilemany JM: ‘Study of Ti deposition onto Al alloy by cold gas spraying’, Surf. Coat. Technol., 2010, 205, 1096–1102.
  • Wong W, Irissou E, Vo P, Sone M, Bernier F, Legoux J.-G, Fukanuma H and Yue S.: ‘Cold spray forming of Inconel 718’, J. Thermal Spray Technol., 2012, 1–9.
  • Xiong Y, Bae G, Xiong X and Lee C: ‘The effects of successive impacts and cold welds on the deposition onset of cold spray coatings’, J. Thermal Spray Technol., 2010, 19, 575–585.
  • Bala N, Singh H and Prakash S: ‘High temperature corrosion behavior of cold spray Ni-20Cr coating on boiler steel in molten salt environment at 900°C’, Proc. Int. Thermal Spray Conf., Las Vegas, NV, USA, August 2009, ASM International, 679–684.
  • Trexler MD, Carter R, de Rosset WS, Gray D, Helfritch DJ and Champagne VK: ‘Cold spray fabrication of refractory materials for gun barrel liner applications’, Mater. Manuf. Process., 2012, 27, 820–824.
  • Bolelli G, Bonferroni B, Koivuluoto H, Lusvarghi L and Vuoristo P: ‘Depth-sensing indentation for assessing the mechanical properties of cold-sprayed Ta’, Surf. Coat. Technol., 2010, 205, 2209–2217.
  • Koivuluoto H, Näkki J and Vuoristo P: ‘Corrosion properties of cold-sprayed tantalum coatings’, J. Thermal Spray Technol., 2008, 18, 75–82.
  • Koivuluoto H, Bolelli G, Lusvarghi L, Casadei F and Vuoristo P: ‘Corrosion resistance of cold-sprayed Ta coatings in very aggressive conditions’, Surf. Coat. Technol., 2010, 205, 1103–1107.
  • Moridi A, Hassani-Gangaraj SM and Guagliano M: On fatigue behavior of cold spray coating. MRS Bulletin. under review.
  • Bérubé G, Yandouzi M, Zúñiga A, Ajdelsztajn L, Villafuerte J and Jodoin B: ‘Phase stability of Al-5Fe-V-Si coatings produced by cold gas dynamic spray process using rapidly solidified feedstock materials’, J. Thermal Spray Technol., 2012, 21, 240–254.
  • Kiz MM, Byakova AV, Sirko AI, Milman YV and Yakovleva MS: ‘Cold spray coatings of Al-Fe-Cr alloy reinforced by nano-sized quasicrystalline particles’, Ukrain. J. Phys., 2009, 54, 594–599.
  • Richer P, Yandouzi M, Beauvais L and Jodoin B: ‘Oxidation behaviour of CoNiCrAlY bond coats produced by plasma, HVOF and cold gas dynamic spraying’, Surf. Coat. Technol., 2010, 204, 3962–3974.
  • Chen WR, Irissou E, Wu X, Legoux J.-G and Marple BR: ‘The oxidation behavior of TBC with cold spray CoNiCrAlY bond coat’, J. Thermal Spray Technol., 2011, 20, 132–138.
  • Moridi A, Azadi M and Farrahi GH: ‘Thermo-mechanical stress analysis of thermal barrier coating system considering thickness and roughness effects’, Surf. Coat. Technol., 2012 (article in press).
  • Richer P, Zúñiga A, Yandouzi M and Jodoin B: ‘CoNiCrAlY microstructural changes induced during cold gas dynamic spraying’, Surf. Coat. Technol., 2008, 203, 364–371.
  • Schuh C, Hufnagel T and Ramamurty U: ‘Mechanical behavior of amorphous alloys’, Acta Mater., 2007, 55, 4067–4109.
  • Inoue A: ‘Stabilization of metalic supercooled liquid’, Acta Mater., 2000, 48, 279–306. (article in press).
  • Inoue A, Kato A, Zhang TGKS and Masumoto T: ‘Mg-Cu-Y amorphousalloys with high mechanical strengths produced by a metallic mold casting method’, Mater. Trans. JIM, 1991, 32, 609–616.
  • Peker A and Johnson WL: ‘A highly processable metallic glass - Zr41·2Ti13·8Cu12·5Ni10·0Be22·5’, Appl. Phys. Lett., 1993, 63, 2342–2344.
  • Kim JJ, Choi Y, Suresh S and Argon AS: ‘Nanocrystallization during nanoindentation of a bulk amorphous metal alloy at room temperature’, Science (New York, N.Y.), 2002, 295, 654–657.
  • Wang C.-C, Mao Y.-W, Shan Z.-W, Dao M, Li J, Sun J and Ma E and Suresh S: ‘Real-time, high-resolution study of nanocrystallization and fatigue cracking in a cyclically strained metallic glass’, Proc. National Acad. Sci. USA, 2013, 1–6, doi:10.1073/pnas.1320235110.
  • List A, Gärtner F, Schmidt T and Klassen T: ‘Impact conditions for cold spraying of hard metallic glasses’, J. Thermal Spray Technol., 2012, 21, 531–540.
  • Yoon S, Xiong Y, Kim H and Lee C: ‘Dependence of initial powder temperature on impact behaviour of bulk metallic glass in a kinetic spray process’, J. Phys. D: Appl. Phys., 2009, 42, 082004.
  • Zhang YY, Wu XK, Cui H and Zhang JS: ‘Cold-spray processing of a high density nanocrystalline aluminum alloy 2009 coating using a mixture of as-atomized and as-cryomilled powders’, J. Thermal Spray Technol., 2011, 20, 1125–1132.
  • Novoselova T, Fox P, Morgan R and O’Neill W: ‘Experimental study of titanium/aluminium deposits produced by cold gas dynamic spray’, Surf. Coat. Technol., 2006, 200, 2775–2783.
  • Kong LY, Shen L, Lu B, Yang R, Cui XY, Li TF and Xiong TY: ‘Preparation of TiAl 3-Al composite coating by cold spray and its high temperature oxidation behavior’, J. Thermal Spray Technol., 2010, 19, 1206–1210.
  • Lee H, Shin H and Ko K: ‘Effects of gas pressure of cold spray on the formation of Al-based intermetallic compound’, J. Thermal Spray Technol., 2010, 19, 102–109.
  • Liang Y, Shi B, Yang X, Zhang J and Meng X: ‘Microstructure and nano-mechanical property of cold spray Co-base refractory alloy coating’, Acta Metall. Sin. (Engl. Lett.), 2011, 24, 190–194.
  • Al-Mangour B, Mongrain R, Irissou E and Yue S: ‘Improving the strength and corrosion resistance of 316L stainless steel for biomedical applications using cold spray’, Surf. Coat. Technol., 2013, 216, 297–307.
  • Kang H.-K and Kang SB: ‘Tungsten/copper composite deposits produced by a cold spray’, Scr. Mater., 2003, 49, 1169–1174.
  • King PC, Zahiri SH and Jahedi MZ: ‘Rare earth/metal composite formation by cold spray’, J. Therm. Spray Technol., 2008, 17, 221–227.
  • Bu H, Yandouzi M, Lu C, MacDonald D and Jodoin B: ‘Cold spray blended Al+Mg 17Al 12 coating for corrosion protection of AZ91D magnesium alloy’, Surf. Coat. Technol., 2012, 207, 155–162.
  • Spencer K, Fabijanic DM and Zhang M.-X: ‘The influence of Al 2O 3 reinforcement on the properties of stainless steel cold spray coatings’, Surf. Coat. Technol., 2012, 206, 3275–3282.
  • Irissou E, Legoux J.-G, Arsenault B and Moreau C: ‘Investigation of Al-Al 2O 3 cold spray coating formation and properties’, J. Thermal Spray Technol., 2007, 16, 661–668.
  • Sova A, Kosarev VF, Papyrin A and Smurov I: ‘Effect of ceramic particle velocity on cold spray deposition of metal-ceramic coatings’, J. Thermal Spray Technol., 2011, 20, 285–291.
  • Lee HY, Jung SH, Lee SY, You YH and Ko KH: ‘Correlation between Al2O3 particles and interface of Al-Al2O3 coatings by cold spray’, Appl. Surf. Sci., 2005, 252, 1891–1898.
  • Lee HY, Yu YH, Lee YC, Hong YP and Ko KH: ‘Cold spray of SiC and Al2O3 with soft metal incorporation: a technical contribution’, J. Thermal Spray Technol., 2004, 13, 184–189.
  • Spencer K, Fabijanic DM and Zhang M.-X: ‘The use of Al-Al2O3 cold spray coatings to improve the surface properties of magnesium alloys’, Surf. Coat. Technol., 2009, 204, 336–344.
  • Koivuluoto H and Vuoristo P: ‘Effect of powder type and composition on structure and mechanical properties of Cu+Al2O3 coatings prepared by using low-pressure cold spray process’, J. Thermal Spray Technol., 2010, 19, 1081–1092.
  • Wang Q, Spencer K, Birbilis N and Zhang M.-X: ‘The influence of ceramic particles on bond strength of cold spray composite coatings on AZ91 alloy substrate’, Surf. Coat. Technol., 2010, 205, 50–56.
  • Miguel JM, Vizcaíno S, Dosta S, Cinca N, Lorenzana C and Guilemany JM: ‘Metal-ceramic composite coatings obtained by new thermal spray technologies: cold gas spray (CGS) and its wear resistance’, Recubr. Mater. Compuest. Metal-Cerám. Obten. Nuevas Tecnol. Proyecc. Térm.: Proyecc. (CGS) Resist. Desg., 2011, 47, 390–401.
  • Dzhurinskiy D, Maeva E, Leshchinsky E and Maev RG: ‘Corrosion protection of light alloys using low pressure cold spray’, J. Thermal Spray Technol., 2012, 21, 304–313.
  • Kim H.-J, Lee C.-H and Hwang S.-Y: ‘Fabrication of WC-Co coatings by cold spray deposition’, Surf. Coat. Technol., 2005, 191, 335–340.
  • Yandouzi M, Sansoucy E, Ajdelsztajn L and Jodoin B: ‘WC-based cermet coatings produced by cold gas dynamic and pulsed gas dynamic spraying processes’, Surf. Coat. Technol., 2007, 202, 382–390.
  • Dosta S, Couto M and Guilemany JM: ‘Cold spray deposition of a WC-25Co cermet onto Al7075-T6 and carbon steel substrates’, Acta Mater., 2013, 61, 643–652.
  • Wolfe DE, Eden TJ, Potter JK and Jaroh AP: ‘Investigation and characterization of Cr3C2-based wear-resistant coatings applied by the cold spray process’, J. Thermal Spray Technol., 2006, 15, 400–412.
  • Kim HJ, Jang JH and Lee CH: ‘Assessment of metal/diamond composite coating by cold spray deposition’, J. Korean Inst. Met. Mater., 2007, 45, 409–415.
  • Na H, Bae G, Shin S, Kumar S and Kim H: ‘Advanced deposition characteristics of kinetic sprayed bronze/diamond composite by tailoring feedstock properties’, Compos. Sci. Technol., 2009, 69, 463–468.
  • Rui D, Xiangbo L, Jia W and Likun X: ‘Electrochemical corrosion and mathematical model of cold spray Cu-Cu2O coating in NaCl solution - Part I: Tafel polarization region model’, Int. J. Electrochem. Sci., 2013, 8, 5902–5924.
  • Bacciochini A, Radulescu MI, Yandouzi M, Maines G, Lee JJ and Jodoin B: ‘Reactive structural materials consolidated by cold spray: Al-CuO thermite’, Surf. Coat. Technol., 2013, 226, 60–67.
  • Feng C, Guipont V, Jeandin M, Amsellem O, Pauchet F, Saenger R, Bucher S and Iacob C: ‘B 4C/Ni Composite coatings prepared by cold spray of blended or CVD-coated powders’, J. Thermal Spray Technol., 2012, 21, 561–570.
  • Sun L, Berndt CC, Gross KA and Kucuk A: ‘Material fundamentals and clinical performance of plasma- sprayed hydroxyapatite coatings: a review’, J. Biomed. Mater. Res., 2001, 58, 570–592.
  • Choudhuri A, Mohanty PS and Karthikeyan J: ‘Bio-ceramic composite coatings by cold spray technology’, Proc. Int. Thermal Spray Conf., 2009, 391–396.
  • Cho S, Takagi K, Kwon H, Seo D, Ogawa K, Kikuchi K and Kawasaki A: ‘Multi-walled carbon nanotube-reinforced copper nanocomposite coating fabricated by low-pressure cold spray process’, Surf. Coat. Technol., 2012, 206, 3488–3494.
  • Seo D, Sayar M and Ogawa K: ‘SiO2 and MoSi2 formation on Inconel 625 surface via SiC coating deposited by cold spray’, Surf. Coat. Technol., 2012, 206, 2851–2858.
  • Lee HY, Yu YH, Lee YC, Hong YP and Ko KH: ‘Thin film coatings of WO3 by cold gas dynamic spray: a technical note’, J. Thermal Spray Technol., 2005, 14, 183–186.
  • Yang G.-J, Li C.-J, Han F, Li W.-Y and Ohmori A: ‘Low temperature deposition and characterization of TiO2 photocatalytic film through cold spray’, Appl. Surf. Sci., 2008, 254, 3979–3982.
  • Kliemann J.-O, Gutzmann H, Gärtner F, Klassen T and Jursic I: ‘Formation of cold-sprayed ceramic titanium dioxide layers on metal surfaces’, J. Thermal Spray Technol., 2010, 20, 292–298.
  • Yamada M, Isago H, Nakano H and Fukumoto M: ‘Cold spraying of tio2 photocatalyst coating with nitrogen process gas’, J. Thermal Spray Technol., 2010, 19, 1218–1223.
  • Chun D.-M, Choi J.-O, Lee CS and Ahn S.-H: ‘Effect of stand-off distance for cold gas spraying of fine ceramic particles (<5 μm) under low vacuum and room temperature using nano-particle deposition system (NPDS)’, Surf. Coat. Technol., 2012, 206, 2125–2132.
  • Noorakma ACW, Zuhailawati H, Aishvarya V and Dhindaw BK: ‘hydroxyapatite-coated magnesium-based biodegradable alloy: cold spray deposition and simulated body fluid studies’, J. Mater. Eng. Perform., 2013, 1–8.
  • Wang Y.-Y, Liu Y, Li C.-J, Yang G.-J and Kusumoto K: ‘Electrical and mechanical properties of nano-structured TiN coatings deposited by vacuum cold spray’, Vacuum, 2012, 86, 953–959.
  • Gutzmann H, Gärtner F, Höche D, Blawert C and Klassen T: ‘Cold spraying of Ti2AlC MAX-phase coatings’, J. Thermal Spray Technol., 2012, 22, 406–412.
  • Rech S, Surpi A, Vezzù S and Patelli A, Trentin A, Glor J, Frodelius J, Hultman L and Eklund P: ‘Cold-spray deposition of Ti2AlC coatings’, Vacuum, 2013, 94, 69–73.
  • Frodelius J, Johansson EM, Córdoba JM, Odén M, Eklund P and Hultman L: ‘Ti2AlC coatings deposited by high velocity oxy-fuel spraying’, Surf. Coat. Technol., 2008, 202, 5976–5981.
  • Lupoi R and O’Neill W: ‘Deposition of metallic coatings on polymer surfaces using cold spray’, Surf. Coat. Technol., 2010, 205, 2167–2173.
  • Zhou XL, Chen AF, Liu JC, Wu XK and Zhang JS: ‘Preparation of metallic coatings on polymer matrix composites by cold spray’, Surf. Coat. Technol., 2011, 206, 132–136.
  • Affi J, Okazaki H, Yamada M and Fukumoto M: ‘Fabrication of aluminum coating onto CFRP substrate by cold spray’, Mater. Trans., 2011, 52, 1759–1763.
  • Lee JH, Jang HL, Lee KM, Baek HR, Jin K, Hong KS, Noh JH and Lee HK: ‘In vitro and in vivo evaluation of the bioactivity of hydroxyapatite-coated polyetheretherketone biocomposites created by cold spray technology’, Acta Biomater., 2013, 9, 6177–6187.
  • Gardon M, Latorre A, Torrell M, Dosta S, Fernández J and Guilemany JM: ‘Cold gas spray titanium coatings onto a biocompatible polymer’, Mater. Lett. 2013, 106, 97–99.
  • Xu Y and Hutchings IM: ‘Cold spray deposition of thermoplastic powder’, Surf. Coat. Technol., 2006, 201, 3044–3050.
  • Alhulaifi AS, Buck GA and Arbegast WJ: ‘Numerical and experimental investigation of cold spray gas dynamic effects for polymer coating’, J. Thermal Spray Technol., 2012, 21, 852–862.
  • Vucko MJ, King PC, Poole AJ, Carl C, Jahedi MZ and de Nys R: ‘Cold spray metal embedment: an innovative antifouling technology’, Biofouling, 2012, 28, 239–248.
  • King PC, Poole AJ, Horne S and de Nys R: ‘Embedment of copper particles into polymers by cold spray’, Surf. Coat. Technol., 2013, 216, 60–67.
  • Vucko MJ, King PC, Poole AJ, Jahedi MZ and de Nys R: ‘Polyurethane seismic streamer skins: an application of cold spray metal embedment’, Biofouling, 2013, 29, 1–9.
  • Gleiter H: ‘Nanocrystalline materials’, 1990, 33, 223–315.
  • Kumar K, Van Swygenhoven H and Suresh S: ‘Mechanical behavior of nanocrystalline metals and alloys’, Acta Mater., 2003, 51, 5743–5774.
  • Dao M, Lu L, Asaro R, Dehosson J and Ma E: ‘Toward a quantitative understanding of mechanical behavior of nanocrystalline metals’, Acta Mater., 2007, 55, 4041–4065.
  • Suryanarayana C: ‘Mechanical alloying and milling’, Progr. Mater. Sci., 2001, 46, 1–184.
  • Ajdelsztajn L, Jodoin B, Kim GE and Schoenung JM: ‘Cold spray deposition of nanocrystalline aluminum alloys’, Metall. Mater. Trans. A: Phys. Metall. Mater. Sci., 2005, 36, 657–666.
  • Hall AC, Brewer LN and Roemer TJ: ‘Preparation of aluminum coatings containing homogenous nanocrystalline microstructures using the cold spray process’, J. Thermal Spray Technol., 2008, 17, 352–359.
  • Ajdelsztajn L, Zúñiga A, Jodoin B and Lavernia EJ: ‘Cold-spray processing of a nanocrystalline Al-Cu-Mg-Fe-Ni alloy with Sc’, J. Thermal Spray Technol., 2006, 15, 184–190.
  • Richer P, Yandouzi M, Brochu M, Zúñiga A, Corbeil A and Jodoin B: ‘Oxidation behaviour of conventional and nanocrystalline conicraly bond coats manufactured by cold spray’, Proc. ASME Turbo Expo, 2011, 4, 737–745.
  • Goupil G, Bonnefont G, Idrissi H, Guay D and Roué L: ‘Cold spray deposition of mechanically alloyed Cu-Ni-Fe material for application as inert anodes for aluminum production’, TMS Light Met., 2013, 1283–1287.
  • Poirier D, Legoux J.-G, Drew RAL and Gauvin R: ‘Consolidation of Al2O3/Al nanocomposite powder by cold spray’, J. Thermal Spray Technol., 2011, 20, 275–284.
  • Sudharshan Phani P, Vishnukanthan V and Sundararajan G: ‘Effect of heat treatment on properties of cold sprayed nanocrystalline copper alumina coatings’, Acta Mater., 2007, 55, 4741–4751.
  • Wang H.-T, Li C.-J, Yang G.-J and Li C.-X: ‘Microstructural characterization of cold-sprayed nanostructured FeAl intermetallic compound coating and its ball-milled feedstock powders’, J. Thermal Spray Technol., 2007, 16, 669–676.
  • Song M, Araki H, Kuroda S and Sakaki K: ‘Reaction layer at the interface between aluminium particles and a glass substrate formed by cold spray’, J. Phys. D: Appl. Phys., 2013, 46. art. no. 195301.
  • King PC, Zahiri S, Jahedi M and Friend J: ‘Aluminium coating of lead zirconate titanate – a study of cold spray variables’, Surf. Coat. Technol., 2010, 205, 2016–2022.

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