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This velocity is clearly dependent on both sprayed material and substrate properties.
Low gas temperatures (< 600 °C) make it possible to maintain sprayed material in solid state during the whole process.
The axial injection mode was adopted to improve the enthalpy exchange between the plasma jet and sprayed material.
The difficulty in producing thick-formed components using this technique arises from residual stress in the sprayed material.
In this context, a novel apparatus that collects the sprayed material traveling out of the nozzle was developed; material spatial distribution and composition are brought forward.
Residual stress in the deposits is a factor that needs consideration, since it has direct influence on the processability and integrity of the sprayed material.
Similar(46)
The electrical properties of these coatings are impacted by the defected microstructure common to plasma sprayed materials.
Therefore, performing the fusion for a shorter time is effective for producing sprayed materials of enhanced fatigue properties.
Whether the in-situ multiphase doping, especially the metastable phase, makes the thermally sprayed materials tough or brittle is still unknown.
However, there is at present a small risk of chipping of the sprayed materials, which can be reduced by future process optimisation.
Besides spraying material, the coating quality depends greatly on the gas and particle dynamics.
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