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However, combining increased stand-off with sandwich construction does not yield the synergistic benefits of sandwich construction combined with beam inclination.
This is because the slugs lengthen as they traverse towards their target and thus the duration of loading is extended with increasing stand-off.
Results have shown that the extent of melting of particles decreased, while the crystallinity of the HA increased with increasing stand-off distance with power level of 40 kW.
This means that, by increasing stand-off distance, the average value of micro hardness is decreased.
When the focusing-flow nozzle is employed, the spot size decreases with increasing stand-off distance from 0.4 to 0.8 mm.
It is clear that the porosities of the coatings are increased by increasing the stand-off distance.
The un-melted particles can be clearly recognized at longer spray distances and the porosities of the coatings are increased by increasing the stand-off distance.
Thus, by increasing the stand-off distance, the porosity of the coating is increased and micro hardness value is decreased.
By increasing the stand-off distance, the average value of micro hardness is decreased and the porosity of the coating is increased.
Finally, we show that increasing the stand-off distance decreases beam deflections.
We also observed that the contact angle decreases from 107 to 67° by increasing the stand-off distance.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com