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43
than O
the O
pure O
solid O
structure S-CONPRI
and O
the O
pure O
lattice B-FEAT
structure E-FEAT
. O
Advancements O
in O
distributed O
recycling S-CONPRI
technologies O
now O
allow O
for O
on-demand O
reconstitution O
of O
traditionally O
neglected O
MRE O
pouch O
waste O
into O
useful O
appliances O
via O
material B-MANP
extrusion I-MANP
additive I-MANP
manufacturing E-MANP
. O
In O
this O
work O
, O
we O
demonstrate O
recycling S-CONPRI
of O
MRE O
pouch O
materials S-CONPRI
through O
a O
combined O
compounding O
, O
filament S-MATE
extrusion S-MANP
, O
and O
fused B-MANP
filament I-MANP
fabrication E-MANP
( O
FFF S-MANP
) O
additive B-MANP
manufacturing E-MANP
protocol O
. O
Mechanical B-CONPRI
properties E-CONPRI
and O
barrier O
properties S-CONPRI
of O
additively B-MANP
manufactured E-MANP
structures O
were O
evaluated O
through O
tensile B-CHAR
testing E-CHAR
and O
water O
vapor O
transmission S-CHAR
testing S-CHAR
, O
respectively O
, O
and O
found O
to O
be S-MATE
comparable O
to O