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  2. Detonation spraying - Wikipedia

    en.wikipedia.org/wiki/Detonation_spraying

    This is achieved due to the extremely high temperatures and velocities produced by the detonation gun during surface coating application. [6] These properties make detonation spraying the standard of comparison for all other thermal spray coatings (wire arc, plasma, flame, HVAF, HVOF, Warm, Cold). [2]

  3. Thermal spraying - Wikipedia

    en.wikipedia.org/wiki/Thermal_spraying

    Thermal spraying can provide thick coatings (approx. thickness range is 20 microns to several mm, depending on the process and feedstock), over a large area at high deposition rate as compared to other coating processes such as electroplating, physical and chemical vapor deposition. Coating materials available for thermal spraying include ...

  4. Plasma transferred wire arc thermal spraying - Wikipedia

    en.wikipedia.org/wiki/Plasma_transferred_wire...

    Plasma transferred wire arc (PTWA) thermal spraying is a thermal spraying process that deposits a coating on the internal surface of a cylindrical surface, or external surface of any geometry. It is predominantly known for its use in coating the cylinder bores of an internal combustion engine , enabling the construction of aluminium engine ...

  5. Solution precursor plasma spray - Wikipedia

    en.wikipedia.org/.../Solution_precursor_plasma_spray

    Solution precursor plasma spray (SPPS) is a thermal spray process where a feedstock solution is heated and then deposited onto a substrate. Basic properties of the process are fundamentally similar to other plasma spraying processes. However, instead of injecting a powder into the plasma plume, a liquid precursor is used.

  6. Ultra-high temperature ceramic - Wikipedia

    en.wikipedia.org/wiki/Ultra-high_temperature_ceramic

    Ultra-high-temperature ceramics (UHTCs) are a type of refractory ceramics that can withstand extremely high temperatures without degrading, often above 2,000 °C. [1] They also often have high thermal conductivities and are highly resistant to thermal shock, meaning they can withstand sudden and extreme changes in temperature without cracking or breaking.

  7. Cold spraying - Wikipedia

    en.wikipedia.org/wiki/Cold_spraying

    [11] [12] Furthermore, the technology allows to spray thermally sensitive materials and highly dissimilar materials combinations, due to the fact that the adhesion mechanism is purely mechanical. Other advantages are: [13] High thermal and electrical conductivity of coatings; High density and hardness of coatings; High homogeneity of coatings;

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