Post-process treatments on supersonic cold sprayed coatings: a review
Post-process treatments on supersonic cold sprayed coatings: a review
Cold Gas Dynamic Spray or Supersonic Cold Spray, or simply 'Cold Spray', is an emerging technology for rapidly building thin films, thick coatings and large-scale additive manufacturing at relatively low temperatures. In a cold spray process, particles are accelerated to supersonic speeds by a propellant gas and impact a substrate, thus producing a strong bonding with the substrate and subsequently forming a deposit via layer-by-layer buildup. The scalability and low cost of this method make it promising for many applications in industry, such as metal component surface repair/enhancement/restoration and functional coatings for electrical, thermal, biomedical, energy storage, and nuclear plant applications. However, cold sprayed deposits usually require post process treatments to further modify their microstructures and mechanical properties in order to obtain the desired performances. A number of studies have been carried out on this topic. Here, recent progress in different post process treatments on cold sprayed deposits is reviewed, including heat treatment, friction-stir processing, shot peening, and laser re-melting. The effects of these post treatments on the microstructure, residual stress and mechanical properties of cold sprayed deposits are discussed.
Cold spray, Mechanical characteristics, Metallic deposit, Microstructure, Post-process treatment
Sun, Wen
38403bb0-2b99-4958-b9ee-39b4016d0968
Tan, Adrian Wei Yee
3d644676-a520-4f41-b7f1-410d1c46689d
Wu, Kaiqiang
0a556f8f-8f7c-42ad-b49c-19dce848914c
Yin, Shuo
f5e2ee5c-64bf-468f-bbba-09a3d7766ce9
Yang, Xiawei
28832ec0-7b61-4c90-9e48-889dfecc4265
Marinescu, Iulian
eb6fb154-1605-451d-a446-f3148bb0da0b
Liu, Erjia
f0eb8f01-7079-4d8a-9687-f00250b31ffd
1 February 2020
Sun, Wen
38403bb0-2b99-4958-b9ee-39b4016d0968
Tan, Adrian Wei Yee
3d644676-a520-4f41-b7f1-410d1c46689d
Wu, Kaiqiang
0a556f8f-8f7c-42ad-b49c-19dce848914c
Yin, Shuo
f5e2ee5c-64bf-468f-bbba-09a3d7766ce9
Yang, Xiawei
28832ec0-7b61-4c90-9e48-889dfecc4265
Marinescu, Iulian
eb6fb154-1605-451d-a446-f3148bb0da0b
Liu, Erjia
f0eb8f01-7079-4d8a-9687-f00250b31ffd
Sun, Wen, Tan, Adrian Wei Yee and Wu, Kaiqiang
,
et al.
(2020)
Post-process treatments on supersonic cold sprayed coatings: a review.
Coatings, 10 (2), [123].
(doi:10.3390/coatings10020123).
Abstract
Cold Gas Dynamic Spray or Supersonic Cold Spray, or simply 'Cold Spray', is an emerging technology for rapidly building thin films, thick coatings and large-scale additive manufacturing at relatively low temperatures. In a cold spray process, particles are accelerated to supersonic speeds by a propellant gas and impact a substrate, thus producing a strong bonding with the substrate and subsequently forming a deposit via layer-by-layer buildup. The scalability and low cost of this method make it promising for many applications in industry, such as metal component surface repair/enhancement/restoration and functional coatings for electrical, thermal, biomedical, energy storage, and nuclear plant applications. However, cold sprayed deposits usually require post process treatments to further modify their microstructures and mechanical properties in order to obtain the desired performances. A number of studies have been carried out on this topic. Here, recent progress in different post process treatments on cold sprayed deposits is reviewed, including heat treatment, friction-stir processing, shot peening, and laser re-melting. The effects of these post treatments on the microstructure, residual stress and mechanical properties of cold sprayed deposits are discussed.
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More information
Accepted/In Press date: 22 January 2020
Published date: 1 February 2020
Additional Information:
Funding Information:
This work was financially supported by Industry Alignment Fund (IAF) of Singapore A*STAR, Rolls-Royce (RR), and Nanyang Technological University (NTU), Singapore, with the research grant number: ARMS 1.1 Advanced Metallized Coatings using Cold Spray Authors would like to thank Singapore A*STAR, Rolls-Royce and Nanyang Technological University.
Publisher Copyright:
© 2020 by the authors.
Keywords:
Cold spray, Mechanical characteristics, Metallic deposit, Microstructure, Post-process treatment
Identifiers
Local EPrints ID: 475786
URI: http://eprints.soton.ac.uk/id/eprint/475786
ISSN: 2079-6412
PURE UUID: 8358887d-5a5d-418f-8ea8-736f85385c43
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Date deposited: 28 Mar 2023 16:49
Last modified: 17 Mar 2024 13:14
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Contributors
Author:
Wen Sun
Author:
Adrian Wei Yee Tan
Author:
Kaiqiang Wu
Author:
Shuo Yin
Author:
Xiawei Yang
Author:
Iulian Marinescu
Author:
Erjia Liu
Corporate Author: et al.
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