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the O
mechanical B-CONPRI
properties E-CONPRI
of O
traditionally O
low O
strength S-PRO
and O
low O
ductility S-PRO
alloys S-MATE
. O
The O
design S-FEAT
approach O
is O
demonstrated O
with O
the O
Fe-50 O
at. O
% O
Co S-MATE
alloy S-MATE
, O
as S-MATE
a O
model B-CONPRI
material E-CONPRI
of O
interest O
for O
electromagnetic O
applications O
. O
AM-processed O
components S-MACEQ
exhibited O
unprecedented O
performance S-CONPRI
, O
with O
a O
300 O
% O
increase O
in O
strength S-PRO
and O
an O
order-of-magnitude O
improvement O
in O
ductility S-PRO
relative O
to O
conventional O
wrought B-MATE
material E-MATE
. O
These O
results O
are O
discussed O
in O
the O
context O
of O
product O
performance S-CONPRI
, O
production S-MANP
yield O
, O
and O
manufacturing S-MANP
implications O
toward O
enabling O
the O
design S-FEAT
and O
processing O
of O
high-performance O
, O
next-generation O
components S-MACEQ
, O
and O
alloys S-MATE
. O