Ey. Shcolnikov et al., Acceleration of microparticles in electrothermal launcher with multigap scheme of discharge unit, IEEE MAGNET, 37(1), 2001, pp. 188-193
To obtain high quality coatings out of powder materials by means of an elec
trothermal launcher it is necessary to have a certain structure of the gas
and plasma streams, It has been achieved by using two successively position
ed discharge gaps in the launcher scheme.
A launcher physical model was used for the analysis of dynamics of flows ge
nerated in the gaps and formation of a united shock-wave stream in which th
e acceleration and heating of powder material microparticles occurs, It was
demonstrated that the capture of microparticles into acceleration is reali
zed by the shock-compressed gas region that has specific shape and follows
immediately behind the head shock-wave. Application of the laser probing of
the flow the shadow images of the flows and the radiation scattered from m
icroparticles enabled us to study the shock-wave streams dynamics and micro
particles acceleration, Experimental data have confirmed the microparticle
acceleration mechanism and proved the differentiation of the bunch due to t
he nonuniformity of the particles dimensions, The strong influence of micro
particle injection conditions on their acceleration dynamics is proved. The
characteristics of obtained coatings, in particular, the porosity and adhe
sion indicate to a real possibility to get coatings with high qualities.