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forces E-CONPRI
on O
free B-CONPRI
surface E-CONPRI
as S-MATE
localized O
body B-CONPRI
forces E-CONPRI
. O
This O
weak B-CONPRI
coupling I-CONPRI
model E-CONPRI
has O
better O
accuracy S-CHAR
than O
empirical S-CONPRI
model O
and O
decreases O
computational O
consumption O
. O
The O
molten B-CONPRI
pool E-CONPRI
morphology O
and O
cross-sectional O
profile S-FEAT
of O
simulated O
results O
accord O
well O
with O
experimental S-CONPRI
results O
in O
both O
single-bead O
deposition S-CONPRI
and O
overlapping O
deposition S-CONPRI
, O
which O
indicates O
that O
this O
weak B-CONPRI
coupling I-CONPRI
modeling I-CONPRI
method E-CONPRI
is O
capable O
of O
simulating O
the O
complex O
heat B-CONPRI
and I-CONPRI
mass I-CONPRI
transfer E-CONPRI
phenomena O
in O
arc B-MANP
welding E-MANP
based O
additive B-MANP
manufacturing E-MANP
. O
Laser B-MANP
additive I-MANP
manufacturing E-MANP
is O
an O
advanced O
, O
very O
perspective O
technology S-CONPRI
with O
potentially O
wide O
industrial S-APPL
applications O
, O
one O
of O
them O
being O
an O