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process S-CONPRI
from O
small O
scale O
prototype S-CONPRI
models O
to O
large O
scale O
polymer S-MATE
deposition S-CONPRI
has O
been O
driven O
, O
in O
part O
, O
by O
the O
addition O
of O
short B-MATE
carbon I-MATE
fibers E-MATE
to O
the O
polymer B-MATE
feedstock E-MATE
. O
The O
addition O
of O
short B-MATE
carbon I-MATE
fibers E-MATE
improves O
both O
the O
mechanical S-APPL
and O
thermal B-CONPRI
properties E-CONPRI
of O
the O
printed O
beads S-CHAR
. O
The O
improvements O
to O
the O
anisotropic S-PRO
mechanical O
and O
thermal B-CONPRI
properties E-CONPRI
of O
the O
polymer B-MATE
feedstock E-MATE
are O
dependent O
on O
the O
spatially O
varying O
orientation S-CONPRI
of O
short B-MATE
carbon I-MATE
fibers E-MATE
which O
is O
itself O
a O
function O
of O
the O
velocity O
gradients O
in O
the O
flow O
field O
throughout O
the O
nozzle S-MACEQ
and O
in O
the O
extrudate S-MATE
during O
deposition S-CONPRI
flow O
. O