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for O
additive B-MANP
manufacturing E-MANP
applications O
mainly O
in O
aerospace S-APPL
, O
tool S-MACEQ
and O
die S-MACEQ
, O
and O
marine B-APPL
industries E-APPL
or O
to O
be S-MATE
3D B-MANP
printed E-MANP
on O
top O
of O
other O
metals S-MATE
as S-MATE
a O
hybrid O
product O
using O
different O
techniques O
such O
as S-MATE
Direct O
Metal S-MATE
Laser B-MANP
Sintering E-MANP
( O
DMLS S-MANP
) O
. O
In O
this O
paper O
a O
predictive O
finite B-CONPRI
element E-CONPRI
( O
FE S-MATE
) O
model S-CONPRI
and O
a O
combined O
analytical-numerical O
framework S-CONPRI
were O
developed O
to O
evaluate O
the O
mechanical S-APPL
performance O
of O
hybrid O
additively B-MANP
manufactured E-MANP
components O
and O
facilitate O
the O
prediction S-CONPRI
of O
hardness S-PRO
and O
fatigue B-PRO
life E-PRO
of O
these O
parts O
. O
The O
proposed O
tools S-MACEQ
were O
employed O
in O
two O
scopes O
: O
First O
to O
simulate O
the O