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source S-APPL
parameters S-CONPRI
. O
We O
further O
apply O
our O
model S-CONPRI
to O
the O
simulation S-ENAT
of O
the O
entire O
layer S-PARA
formation O
and O
demonstrate O
the O
strong O
dependence O
of O
the O
resulting O
layer S-PARA
morphology O
on O
the O
hatch B-PARA
spacing E-PARA
. O
The O
presented O
model S-CONPRI
could O
be S-MATE
very O
helpful O
for O
optimizing O
the O
additive S-MATE
process O
without O
carrying O
out O
a O
large O
number O
of O
experiments O
in O
a O
common O
trial-and-error S-CONPRI
method O
, O
developing O
process B-CONPRI
parameters E-CONPRI
for O
new O
materials S-CONPRI
, O
and O
assessing O
novel O
modalities O
of O
powder B-MANP
bed I-MANP
fusion I-MANP
additive I-MANP
manufacturing E-MANP
. O
The O
particle S-CONPRI
size O
and O
shape O
distributions S-CONPRI
of O
metal B-MATE
powders E-MATE
used O
in O
additive B-MANP
manufacturing E-MANP
powder O
bed B-MANP
fusion E-MANP
processes O
are O
of O