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The effect of spraying power on the microstructures and properties of LMS coatings was investigated.
The feedstock particles were sufficiently melted and LMS coatings became more and more compact with the increase of spraying power.
Observation of fracture surfaces shows that carbon fiber bundles can bond well with HA coatings using 40 kW spraying power.
This paper deals with the effect of plasma spraying power on hydroxyapatite (HA) coatings on carbon/carbon composites (C/C composites).
The optimized spraying power is 35 kW.
However, when the spraying power higher than 40 kW, the crystal phases are precipitated.
Similar(51)
The better density, hardness and corrosion resistance are obtained for the coating with higher sprayed power.
La-doped Mo-Si (LMS) ceramic coatings were deposited on SiC-coated carbon/carbon (C/C) composites using plasma spraying at different spraying powers.
Meanwhile, the final mass loss rate (0.02476) was several times lower than that of other spraying powers after the thermal cycling test.
Thus, the hydrophobicity decreased when the spray power increased.
The SEM observation showed that the coating surface feature varied with plasma spray power.
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