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2021 | OriginalPaper | Chapter

10. Applications

Authors : Victor Kenneth Champagne Jr., Dennis Helfritch, Christian Widener, Brian James, Chris Howe, Alex Krakovitz, Tom Stamey

Published in: Practical Cold Spray

Publisher: Springer International Publishing

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Abstract

The cold spray process has been used throughout the years for a variety of different applications across major industries including aerospace, automotive, naval, medical, electronics, petrochemical, and nuclear power. The Cold Spray Action Team (CSAT) website is a respected resource for data and learning about the transition and advancements in cold spray technology (see http://​www.​coldsprayteam.​com/​). Cold spray is applicable to corrosion-resistant coatings (i.e., zinc and aluminum); dimensional restoration and repair (i.e., nickel, stainless steel, titanium, brass, cast iron, copper; aluminum, and other engineering alloys); wear-resistant coatings (combining hard and soft phases, i.e., CrC–NiCr, WC–CoNi, WCu, Diamond-Cu, and others); electromagnetic interference (EMI) shielding of components and structures; field repair of components; and ground support equipment and other systems. Cold spray has been utilized in applications for the military (rotorcraft, fixed wing aircraft, submarines, missiles, vehicles, and ships); the automotive industry (corrosion mitigation over galvanized, welded and crimped areas, air-conditioning heat exchangers, casting defects in engine blocks); and the medical industry (antimicrobial coatings and prosthetics). In this chapter, we will describe some of these applications where cold spray has been successfully employed to produce coatings, provide dimensional restoration, and to produce near-net-shaped parts having equal to or better properties than the OEM (Original Equipment Manufacturer). Numerous case studies of applications development will be presented with details regarding test results and material characterization data.

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Literature
1.
go back to reference J. Vlcek, L. Gimeno, H. Huber, E. Lugscheider, A systematic approach to material eligibility for the cold spray process. J. Therm. Spray Technol. 14(1), 125–133 (2005)CrossRef J. Vlcek, L. Gimeno, H. Huber, E. Lugscheider, A systematic approach to material eligibility for the cold spray process. J. Therm. Spray Technol. 14(1), 125–133 (2005)CrossRef
2.
go back to reference B. Gabriel, V. Champagne, P.Leyman, D. Helfritch, R. Kestler, C. Sauer, K. Legg, Cold spray for repair of magnesium components. Final Report, ESTCP Project WP-0620 (2011) B. Gabriel, V. Champagne, P.Leyman, D. Helfritch, R. Kestler, C. Sauer, K. Legg, Cold spray for repair of magnesium components. Final Report, ESTCP Project WP-0620 (2011)
3.
go back to reference V.K. Champagne, P.F. Leyman, D.J. Helfritch, Magnesium repair by cold spray. ARL-TR-4438 (2008) V.K. Champagne, P.F. Leyman, D.J. Helfritch, Magnesium repair by cold spray. ARL-TR-4438 (2008)
4.
go back to reference P.F. Leyman, V. Champagne, Cold spray aluminum for magnesium gearbox repair, US Army Research Laboratory Weapons & Materials Research Directorate (2008) P.F. Leyman, V. Champagne, Cold spray aluminum for magnesium gearbox repair, US Army Research Laboratory Weapons & Materials Research Directorate (2008)
5.
go back to reference C. Walde, D. Cote, V. Champagne, R. Sisson, Characterizing the effect of thermal processing on powder Al alloys for additive manufacturing applications. J. Mater. Eng. Perform. 40(24), 6357–6361 (2018) C. Walde, D. Cote, V. Champagne, R. Sisson, Characterizing the effect of thermal processing on powder Al alloys for additive manufacturing applications. J. Mater. Eng. Perform. 40(24), 6357–6361 (2018)
6.
go back to reference V. Champagne Jr., D. Kaplowitz, V.K. Champagne III, C. Howe, M.K. West, Dissimilar metal joining and structural repair of ZE41A-T5 cast magnesium by the cold spray process. Mater. Manuf. Processes 33, 130–139 (2018)CrossRef V. Champagne Jr., D. Kaplowitz, V.K. Champagne III, C. Howe, M.K. West, Dissimilar metal joining and structural repair of ZE41A-T5 cast magnesium by the cold spray process. Mater. Manuf. Processes 33, 130–139 (2018)CrossRef
7.
go back to reference F. Gärtner, T. Stoltenhoff, T. Schmidt, H. Kreye, The cold spray process and its potential for industrial applications. J. Therm. Spray Technol. 15(2), 223–232 (2006) F. Gärtner, T. Stoltenhoff, T. Schmidt, H. Kreye, The cold spray process and its potential for industrial applications. J. Therm. Spray Technol. 15(2), 223–232 (2006)
8.
go back to reference M.R. Rokni, S.R. Nutt, C.A. Widener, V.K. Champagne, R.H. Hrabe, Review of relationship between particle deformation, coating microstructure, and properties in high-pressure cold spray. J. Therm. Spray Technol. 26, 1308–1355 (2017)CrossRef M.R. Rokni, S.R. Nutt, C.A. Widener, V.K. Champagne, R.H. Hrabe, Review of relationship between particle deformation, coating microstructure, and properties in high-pressure cold spray. J. Therm. Spray Technol. 26, 1308–1355 (2017)CrossRef
9.
go back to reference C. Widener, R. Hrabe, B. James, V. Champagne, B1 bomber-FEB panel repair by cold spray, in Cold Spray Action Team (CSAT) Meeting 2013 (Worcester Polytechnic Institute, MA, 2013) C. Widener, R. Hrabe, B. James, V. Champagne, B1 bomber-FEB panel repair by cold spray, in Cold Spray Action Team (CSAT) Meeting 2013 (Worcester Polytechnic Institute, MA, 2013)
11.
go back to reference M. Nicholas, Cold spray development for apache mast support, in Cold Spray Action Team (CSAT) Conference (Worcester Polytechnic Institute, MA, 2016) M. Nicholas, Cold spray development for apache mast support, in Cold Spray Action Team (CSAT) Conference (Worcester Polytechnic Institute, MA, 2016)
12.
go back to reference R.A. Leyes, W.A. Fleming, The History of North American small gas turbine aircraft engines, in AIAA, ISBN 9781563473326 (1999) R.A. Leyes, W.A. Fleming, The History of North American small gas turbine aircraft engines, in AIAA, ISBN 9781563473326 (1999)
14.
go back to reference MOOG Aircraft Group, Advanced Surface Repair Capabilities (2012) MOOG Aircraft Group, Advanced Surface Repair Capabilities (2012)
16.
go back to reference ASTM G71-81, Standard guide for conducting and evaluating galvanic corrosion tests in electrolytes (2014) ASTM G71-81, Standard guide for conducting and evaluating galvanic corrosion tests in electrolytes (2014)
17.
go back to reference ASTM G78-15, Standard guide for crevice corrosion testing of iron-base and nickel-base stainless alloys in seawater and other chloride-containing aqueous. Environments ASTM G78-15, Standard guide for crevice corrosion testing of iron-base and nickel-base stainless alloys in seawater and other chloride-containing aqueous. Environments
19.
go back to reference A. Nardi, V. Champagne, Cold spray development for low pressure air compressor cone assembly (2015) A. Nardi, V. Champagne, Cold spray development for low pressure air compressor cone assembly (2015)
22.
go back to reference E. Rastjagaev, J. Wilde, B. Wielage, T. Grund, S. Kümmel, Development and testing of cold gas sprayed circuit boards for power electronics applications, in 7th International Conference on Integrated Power Electronics Systems, Proceedings (Nuremberg, Germany, 2012), pp. 154–159 E. Rastjagaev, J. Wilde, B. Wielage, T. Grund, S. Kümmel, Development and testing of cold gas sprayed circuit boards for power electronics applications, in 7th International Conference on Integrated Power Electronics Systems, Proceedings (Nuremberg, Germany, 2012), pp. 154–159
23.
go back to reference S. Marx, A. Paul, A. Köhler, G. Hüttl, Cold spraying: innovative layers for new applications. J. Therm. Spray Technol. 15(2), 177–183 (2006)CrossRef S. Marx, A. Paul, A. Köhler, G. Hüttl, Cold spraying: innovative layers for new applications. J. Therm. Spray Technol. 15(2), 177–183 (2006)CrossRef
25.
go back to reference G. Jacobson (ed.), NACE International IMPACT, NACE study estimates global cost of corrosion at $2.5 trillion annually (2016) G. Jacobson (ed.), NACE International IMPACT, NACE study estimates global cost of corrosion at $2.5 trillion annually (2016)
26.
go back to reference R. McCune, The use of cold spray coating for corrosion protection, in Cold Spray Materials Deposition Process—Fundamentals and Applications, ed. by K. Victor (Champagne, Woodhead Publishing Limited, Cambridge, 2007) R. McCune, The use of cold spray coating for corrosion protection, in Cold Spray Materials Deposition Process—Fundamentals and Applications, ed. by K. Victor (Champagne, Woodhead Publishing Limited, Cambridge, 2007)
27.
go back to reference L. Laliberte, Miller, B. Shaw, J. Escarsega, An evaluation of sacrifical metallic coatings for service life extension of U.S. Army vehicles, in Corrosion 2005 (National Association of Corrosion Engineers, Houston, TX, 2005) L. Laliberte, Miller, B. Shaw, J. Escarsega, An evaluation of sacrifical metallic coatings for service life extension of U.S. Army vehicles, in Corrosion 2005 (National Association of Corrosion Engineers, Houston, TX, 2005)
28.
go back to reference R.C. McCune, Potential applications of cold-spray technology in automotive manufacturing, in Thermal Spray 2003: Advancing the Science and Applying the Technology, ed, by C. Moreau, B. Marple (ASM International, 2003), pp. 63–70 R.C. McCune, Potential applications of cold-spray technology in automotive manufacturing, in Thermal Spray 2003: Advancing the Science and Applying the Technology, ed, by C. Moreau, B. Marple (ASM International, 2003), pp. 63–70
29.
go back to reference N. Chavan, B. Kiran, A. Jyothirmayi, P. Phani, G. Sundararajan, The corrosion behavior of cold sprayed zinc coatings on mild steel substrate. J. Therm. Spray Technol. 22(4), 463 (2013) N. Chavan, B. Kiran, A. Jyothirmayi, P. Phani, G. Sundararajan, The corrosion behavior of cold sprayed zinc coatings on mild steel substrate. J. Therm. Spray Technol. 22(4), 463 (2013)
31.
go back to reference A. Astaritaa, F. Coticellia, U. Priscoa, Repairing of an engine block through the cold gas dynamic spray technology. Mater. Res. 19(6), 1226–1231 (2016)CrossRef A. Astaritaa, F. Coticellia, U. Priscoa, Repairing of an engine block through the cold gas dynamic spray technology. Mater. Res. 19(6), 1226–1231 (2016)CrossRef
32.
go back to reference Requirements for the control electromagnetic interference characteristics of subsystems and equipment. MIL-STD-461E (1999) Requirements for the control electromagnetic interference characteristics of subsystems and equipment. MIL-STD-461E (1999)
33.
go back to reference V. Champagne, D. Helfritch, Electromagnetic interference shielding by the cold spray particle deposition of an aluminum-alumina matrix. J. Adv. Mater. 40(1) (2008) V. Champagne, D. Helfritch, Electromagnetic interference shielding by the cold spray particle deposition of an aluminum-alumina matrix. J. Adv. Mater. 40(1) (2008)
34.
go back to reference S. Yin, Y. Xie, J. Cizek, E.J. Ekoi, T. Hussain, D.P. Dowling, R. Lupoi, Advanced diamond-reinforced metal matrix composites via cold spray: properties and deposition mechanism. Compos. B 113, 44–54 (2017)CrossRef S. Yin, Y. Xie, J. Cizek, E.J. Ekoi, T. Hussain, D.P. Dowling, R. Lupoi, Advanced diamond-reinforced metal matrix composites via cold spray: properties and deposition mechanism. Compos. B 113, 44–54 (2017)CrossRef
35.
go back to reference T. Johnson, Metal coated particles and defense applications, in Presented to: 2012 Cold Spray Action Team (Worcester, MA, 2012) T. Johnson, Metal coated particles and defense applications, in Presented to: 2012 Cold Spray Action Team (Worcester, MA, 2012)
36.
go back to reference W.A. Rutala, E.B.S. Katz, R.J. Sherertz, F.A. Sarubbi, Environmental-study of a methicillin-resistant staphylococcus-aureus epidemic in a burn unit. J. Clin. Microbiol. 18(3), 683–688 (1983)CrossRef W.A. Rutala, E.B.S. Katz, R.J. Sherertz, F.A. Sarubbi, Environmental-study of a methicillin-resistant staphylococcus-aureus epidemic in a burn unit. J. Clin. Microbiol. 18(3), 683–688 (1983)CrossRef
37.
go back to reference L. Bernard, A. Kereveur, D. Durand, J. Gonot, F. Goldstein, J.L. Mainardi, J. Acar, J. Carlet, Bacterial contamination of hospital physicians’ stethoscopes. Infect. Control Hosp. Epidemiol. 20(9), 626–628 (1999)CrossRef L. Bernard, A. Kereveur, D. Durand, J. Gonot, F. Goldstein, J.L. Mainardi, J. Acar, J. Carlet, Bacterial contamination of hospital physicians’ stethoscopes. Infect. Control Hosp. Epidemiol. 20(9), 626–628 (1999)CrossRef
38.
go back to reference H. Aycicek, U. Oguz, K. Karci, Comparison of results of ATP bioluminescence and traditional hygiene swabbing methods for the determination of surface cleanliness at a hospital kitchen. Int. J. Hyg. Environ. Health 209(2), 203–206 (2006)CrossRef H. Aycicek, U. Oguz, K. Karci, Comparison of results of ATP bioluminescence and traditional hygiene swabbing methods for the determination of surface cleanliness at a hospital kitchen. Int. J. Hyg. Environ. Health 209(2), 203–206 (2006)CrossRef
39.
go back to reference L.F. White, S.J. Dancer, C. Robertson, A microbiological evaluation of hospital cleaning methods. Int. J. Environ. Health Res. 17(4), 285–295 (2007)CrossRef L.F. White, S.J. Dancer, C. Robertson, A microbiological evaluation of hospital cleaning methods. Int. J. Environ. Health Res. 17(4), 285–295 (2007)CrossRef
40.
go back to reference K.I. Kaneko, H. Hayashidani, K. Takahashi, Y. Shiraki, S. Limawongpranee, M. Ogawa, Bacterial contamination in the environment of food factories processing ready-to-eat fresh vegetables. J. Food Prot. 62(7), 800–804 (1999)CrossRef K.I. Kaneko, H. Hayashidani, K. Takahashi, Y. Shiraki, S. Limawongpranee, M. Ogawa, Bacterial contamination in the environment of food factories processing ready-to-eat fresh vegetables. J. Food Prot. 62(7), 800–804 (1999)CrossRef
41.
go back to reference V. Jackson, I.S. Blair, D.A. McDowell, J. Kennedy, D.J. Bolton, The incidence of significant foodborne pathogens in domestic refrigerators. Food Control 18(4), 346–351 (2007)CrossRef V. Jackson, I.S. Blair, D.A. McDowell, J. Kennedy, D.J. Bolton, The incidence of significant foodborne pathogens in domestic refrigerators. Food Control 18(4), 346–351 (2007)CrossRef
42.
go back to reference S. Gounadaki, P.N. Skandamis, E.H. Drosinos, G.J.E. Nychas, Microbial ecology of food contact surfaces and products of small-scale facilities producing traditional sausages. Food Microbiol. 25(2), 313–323 (2008)CrossRef S. Gounadaki, P.N. Skandamis, E.H. Drosinos, G.J.E. Nychas, Microbial ecology of food contact surfaces and products of small-scale facilities producing traditional sausages. Food Microbiol. 25(2), 313–323 (2008)CrossRef
43.
go back to reference J.O. Noyce, H. Michels, C.W. Keevil, Use of copper cast alloys to control Escherichia coli O157 cross-contamination during food processing. Appl. Environ. Microbiol. 72(6), 4239–4244 (2006) J.O. Noyce, H. Michels, C.W. Keevil, Use of copper cast alloys to control Escherichia coli O157 cross-contamination during food processing. Appl. Environ. Microbiol. 72(6), 4239–4244 (2006)
44.
go back to reference G. Faúndez, M. Troncoso, P. Navarrete, G. Figueroa, Antimicrobial activity of copper surfaces against suspensions of salmonella enterica and campylobacter jejuni. BMC Microbiol. 2004, 4 (2004) G. Faúndez, M. Troncoso, P. Navarrete, G. Figueroa, Antimicrobial activity of copper surfaces against suspensions of salmonella enterica and campylobacter jejuni. BMC Microbiol. 2004, 4 (2004)
45.
go back to reference G. Grass, C. Rensing, M. Solioz, Metallic copper as an antimicrobial surface. Appl. Environ. Microbiol. 1541–1547 (2011) G. Grass, C. Rensing, M. Solioz, Metallic copper as an antimicrobial surface. Appl. Environ. Microbiol. 1541–1547 (2011)
46.
go back to reference H. Michels, S.Wilks, J. Noyce, C. Keevil, Copper alloys for human infectious disease control, in Presented at Materials Science and Technology Conference (Pittsburgh, PA, 2005) H. Michels, S.Wilks, J. Noyce, C. Keevil, Copper alloys for human infectious disease control, in Presented at Materials Science and Technology Conference (Pittsburgh, PA, 2005)
47.
go back to reference E. Santo et al., Bacterial killing by dry metallic copper surfaces. Appl. Environ. Microbiol. 77, 794–802 (2011)CrossRef E. Santo et al., Bacterial killing by dry metallic copper surfaces. Appl. Environ. Microbiol. 77, 794–802 (2011)CrossRef
49.
go back to reference A. Jeske, Custom microbiology—evaluation of cold spray copper surfaces, ATS Labs Report A06255 (2008) A. Jeske, Custom microbiology—evaluation of cold spray copper surfaces, ATS Labs Report A06255 (2008)
50.
go back to reference A. Jeske, Custom microbiology—evaluation of coated copper surfaces, ATS Labs Report A07170 (2009) A. Jeske, Custom microbiology—evaluation of coated copper surfaces, ATS Labs Report A07170 (2009)
51.
go back to reference V.K. Champagne, D.J. Helfritch, A demonstration of the antimicrobial effectiveness of various copper surfaces. J. Biol. Eng. 7, 8 (2013)CrossRef V.K. Champagne, D.J. Helfritch, A demonstration of the antimicrobial effectiveness of various copper surfaces. J. Biol. Eng. 7, 8 (2013)CrossRef
52.
go back to reference V. Champagne, D. Helfritch, M. Trexler, Some material characteristics of cold-sprayed structures. Res. Lett. Mater. Sci. 2007, ID 27347 V. Champagne, D. Helfritch, M. Trexler, Some material characteristics of cold-sprayed structures. Res. Lett. Mater. Sci. 2007, ID 27347
53.
go back to reference R. Al-Rub, N.M. Faruk, Dislocation-based model for predicting size-scale effects on the micro and nano indentation hardness of metallic materials. Int. J. Mater. Str. Integr. 4(2/3/4) (2010) R. Al-Rub, N.M. Faruk, Dislocation-based model for predicting size-scale effects on the micro and nano indentation hardness of metallic materials. Int. J. Mater. Str. Integr. 4(2/3/4) (2010)
54.
go back to reference E.W. Hart, On the role of dislocations in bulk diffusion. Acta Metall. 5, 597 (1957)CrossRef E.W. Hart, On the role of dislocations in bulk diffusion. Acta Metall. 5, 597 (1957)CrossRef
55.
go back to reference A. Nardi, Cold spray developments at UTRC, in Cold Spray Action Team Meeting (Worcester Polytechnic Institute, 2012) A. Nardi, Cold spray developments at UTRC, in Cold Spray Action Team Meeting (Worcester Polytechnic Institute, 2012)
Metadata
Title
Applications
Authors
Victor Kenneth Champagne Jr.
Dennis Helfritch
Christian Widener
Brian James
Chris Howe
Alex Krakovitz
Tom Stamey
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-70056-0_10

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