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To improve the lifetime of TBC coatings, post-treatments of sprayed coatings and simultaneous spraying processes by a plasma laser hybrid technique have been tried.
As a result of water quenching tests, coatings prepared by post laser treatments and laser hybrid spraying processes showed significantly improved thermal shock resistance compared to as-sprayed coatings.
Thermal spraying processes are also applied for repairing damaged and worn parts [1] [4].
Conventional HVOF spraying processes are not suitable to achieve submicron and nano-particles.
After conducting a series of initial experiments in a controlled environment, significant factors for plasma spraying processes are selected to construct an appropriate response surface model for developing a robust performance for plasma spraying processes.
A series of spraying processes designed to generate powders and composites using supercritical fluids have been proposed in the past 15 years.
Similar(29)
Coatings were deposited by oxy-acetylene flame spraying process.
The milled powders were sprayed using a high velocity oxy-fuel (HVOF) spraying process.
This work was aimed at developing a plasma spraying process for the deposition of ZrB2 coatings.
An amorphous PEEK coating was prepared on an Al substrate by a flame spraying process.
In this study, epoxy bonded composite coatings were prepared by spraying process.
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