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Additive B-MANP
manufacturing E-MANP
( O
AM S-MANP
) O
is O
evolving O
from O
rapid B-ENAT
prototyping E-ENAT
to O
production S-MANP
of O
structural B-CONPRI
components E-CONPRI
. O
The O
widespread O
application O
of O
AM S-MANP
demands O
a O
high O
level O
of O
mechanical S-APPL
performance O
from O
these O
components S-MACEQ
, O
and O
it O
is O
therefore O
essential O
to O
improve O
feedstock B-MATE
material E-MATE
in O
order O
to O
meet O
these O
mechanical S-APPL
expectations O
. O
However O
, O
compared O
to O
traditional B-MANP
manufacturing E-MANP
techniques O
, O
the O
mechanical B-CONPRI
properties E-CONPRI
of O
AM B-MATE
materials E-MATE
and O
their O
resulting O
components S-MACEQ
are O
not O
well O
understood O
. O
In O
this O
study O
, O
we O
investigated O
the O
processability O
, O
microstructure S-CONPRI
, O
and O
mechanical S-APPL
performance O
of O
twin-screw O
compounded O
short B-MATE
carbon I-MATE
fiber I-MATE