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Atmospheric plasma spraying technologies have been used to produce coatings for different applications in energy systems as gas turbines and solid oxide fuel cells (SOFCs).
Up to now, several strategies such as blade coating [6, 8, 9], ink-jet printing [10, 11], gravure printing [12, 13], and the recently emerged spraying technologies [14 16] have been proved to be efficient methods for the fabrication of electronic devices.
The equiaxed microstructure of 316L stainless steel coating was successfully deposited by low pressure plasma spraying (LPPS), which was different from the lamellar microstructure prepared by other thermal spraying technologies.
High-velocity oxygen-fuel (HVOF) process is one of the most popular thermal spraying technologies and has been widely adopted by many industries due to its flexibility and the superior quality of coatings produced.
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Silicon coatings were deposited using air plasma spraying technology.
The powder feedstock was then sprayed onto Ti6Al4V alloy substrates by an atmospheric plasma spraying technology.
Three actual trends in development of HVOF spraying technology are described and discussed.
WC 17Co nanostructured coating was prepared by means of air plasma spraying technology.
TiCN coating was prepared by reactive plasma spraying technology using titanium and graphite powder.
Firstly, the oxidation and thermal fatigue experiments were carried out, which were domestic spraying technology.
This may provide extensive options for different plasma spraying applications and improve the controllability of plasma spraying technology.
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